These books synthesize perspectives of renowned scientists from the world’s most prestigious institutions - from Fukushima Renewable Energy Institute in Japan to Stanford University in the United States, including Columbia University (US), University of Sidney (AU), University of Miami (USA), Cardiff University (UK), and many others.
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This collaboration embodied the true essence of Open Access by simplifying the approach to OA publishing for Academic editors and authors who contributed their research and allowed the new research to be made available free and open to anyone anywhere in the world.
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To celebrate the 50 books published, we have gathered them at one location - just one click away, so that you can easily browse the subjects of your interest, download the content directly, share it or read online.
IntechOpen and Knowledge Unlatched formed a partnership to support researchers working in engineering sciences by enabling an easier approach to publishing Open Access content. Using the Knowledge Unlatched crowdfunding model to raise the publishing costs through libraries around the world, Open Access Publishing Fee (OAPF) was not required from the authors.
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Initially, the partnership supported engineering research, but it soon grew to include physical and life sciences, attracting more researchers to the advantages of Open Access publishing.
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These books synthesize perspectives of renowned scientists from the world’s most prestigious institutions - from Fukushima Renewable Energy Institute in Japan to Stanford University in the United States, including Columbia University (US), University of Sidney (AU), University of Miami (USA), Cardiff University (UK), and many others.
\n\n
This collaboration embodied the true essence of Open Access by simplifying the approach to OA publishing for Academic editors and authors who contributed their research and allowed the new research to be made available free and open to anyone anywhere in the world.
\n\n
To celebrate the 50 books published, we have gathered them at one location - just one click away, so that you can easily browse the subjects of your interest, download the content directly, share it or read online.
\n'}],latestNews:[{slug:"webinar-introduction-to-open-science-wednesday-18-may-1-pm-cest-20220518",title:"Webinar: Introduction to Open Science | Wednesday 18 May, 1 PM CEST"},{slug:"step-in-the-right-direction-intechopen-launches-a-portfolio-of-open-science-journals-20220414",title:"Step in the Right Direction: IntechOpen Launches a Portfolio of Open Science Journals"},{slug:"let-s-meet-at-london-book-fair-5-7-april-2022-olympia-london-20220321",title:"Let’s meet at London Book Fair, 5-7 April 2022, Olympia London"},{slug:"50-books-published-as-part-of-intechopen-and-knowledge-unlatched-ku-collaboration-20220316",title:"50 Books published as part of IntechOpen and Knowledge Unlatched (KU) Collaboration"},{slug:"intechopen-joins-the-united-nations-sustainable-development-goals-publishers-compact-20221702",title:"IntechOpen joins the United Nations Sustainable Development Goals Publishers Compact"},{slug:"intechopen-signs-exclusive-representation-agreement-with-lsr-libros-servicios-y-representaciones-s-a-de-c-v-20211123",title:"IntechOpen Signs Exclusive Representation Agreement with LSR Libros Servicios y Representaciones S.A. de C.V"},{slug:"intechopen-expands-partnership-with-research4life-20211110",title:"IntechOpen Expands Partnership with Research4Life"},{slug:"introducing-intechopen-book-series-a-new-publishing-format-for-oa-books-20210915",title:"Introducing IntechOpen Book Series - A New Publishing Format for OA Books"}]},book:{item:{type:"book",id:"7855",leadTitle:null,fullTitle:"Essential Oils - Oils of Nature",title:"Essential Oils",subtitle:"Oils of Nature",reviewType:"peer-reviewed",abstract:"Essential oils were used globally as a folk medicine for the treatment of a number of diseases because of the high content of natural compounds. Therefore, this book looks at research topics dealing with isolation, purification, and identification of active ingredients of essential oils from plants. This knowledge will provide significant information about essential oils to researchers and others interested in the field.",isbn:"978-1-78984-641-6",printIsbn:"978-1-78984-640-9",pdfIsbn:"978-1-83880-851-8",doi:"10.5772/intechopen.77673",price:119,priceEur:129,priceUsd:155,slug:"essential-oils-oils-of-nature",numberOfPages:240,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"4cbe4fd4ef95d61934405026e1702d4c",bookSignature:"Hany A. El-Shemy",publishedDate:"January 8th 2020",coverURL:"https://cdn.intechopen.com/books/images_new/7855.jpg",numberOfDownloads:14473,numberOfWosCitations:24,numberOfCrossrefCitations:41,numberOfCrossrefCitationsByBook:1,numberOfDimensionsCitations:81,numberOfDimensionsCitationsByBook:1,hasAltmetrics:1,numberOfTotalCitations:146,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"November 6th 2018",dateEndSecondStepPublish:"November 27th 2018",dateEndThirdStepPublish:"March 7th 2019",dateEndFourthStepPublish:"May 26th 2019",dateEndFifthStepPublish:"July 25th 2019",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"54719",title:"Prof.",name:"Hany",middleName:null,surname:"El-Shemy",slug:"hany-el-shemy",fullName:"Hany El-Shemy",profilePictureURL:"https://mts.intechopen.com/storage/users/54719/images/system/54719.jpg",biography:"Prof. Hany A. El-Shemy received a Ph.D. in Biochemistry from the University of Cairo, Egypt, and a Ph.D. in Genetic Engineering from the University of Hiroshima, Japan. He holds two patents and has written thirteen international books. He has also published more than 100 SCI journal papers and 55 conference presentations. Dr. El-Shemy was a technique committee member as well as chair of many international conferences. He has also served as editor for journals including PLOS ONE, BMC Genomics, and Current Issues in Molecular Biology. He has received several awards, including state prizes from the Academy of Science, Egypt (2004, 2012, and 2018), the Young Arab Researcher prize from the Shuman Foundation, Jordan (2005), and Cairo University Prizes (2007, 2010, and 2014). He served as an expert for the African Regional Center of Technology, Dakar, Senegal, as well as a visiting professor at Pan African University, African Union. He served as vice president of the Academy of Science and Technology, Egypt, from 2013 to 2014. Since 2014 he has been the dean of the Faculty of Agriculture, Cairo University. In 2018, he was elected a fellow of the African Academy of Science.",institutionString:"Cairo University",position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"0",totalChapterViews:"0",totalEditedBooks:"13",institution:{name:"Cairo University",institutionURL:null,country:{name:"Egypt"}}}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:null,coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"1200",title:"Pharmacognosy",slug:"pharmacognosy"}],chapters:[{id:"69670",title:"Applications of Medicinal Herbs and Essential Oils in Food Safety",doi:"10.5772/intechopen.87215",slug:"applications-of-medicinal-herbs-and-essential-oils-in-food-safety",totalDownloads:872,totalCrossrefCites:0,totalDimensionsCites:2,hasAltmetrics:0,abstract:"In the last few years, more and more studies on the biological properties of essential oils (EOs) especially antimicrobial and antioxidant properties in vitro and food model have been published in all parts of the world. But so far no comprehensive reports of these studies have been reported in food model from Iran. The focus of this overview lies in the using of EOs from some indigenous medicinal plants of Iran (including Mentha longifolia, Cuminum cyminum, Teucrium polium, Pimpinella anisum and Allium ascalonicum) in probiotic dairy products (especially cheese, yoghurt and Aryan) in recent years. Recently, consumers have developed an ever-increasing interest in natural products as alternatives for artificial additives or pharmacologically relevant agents. Among them, EOs have gained great popularity in the food, cosmetic as well as pharmaceutical industries. Despite the reportedly strong antimicrobial activity of EOs against food-borne pathogens and spoilage microorganisms, their practical application as preservatives is currently limited owing to the undesirable flavour changes they cause in food products. Nonetheless, more studies are necessary to the applicability of various EOs on other food models in Iran and other countries.",signatures:"Razzagh Mahmoudi, Ata Kaboudari and Babak Pakbin",downloadPdfUrl:"/chapter/pdf-download/69670",previewPdfUrl:"/chapter/pdf-preview/69670",authors:[{id:"245925",title:"Dr.",name:"Razzagh",surname:"Mahmoudi",slug:"razzagh-mahmoudi",fullName:"Razzagh Mahmoudi"}],corrections:null},{id:"68008",title:"Essential Oil’s Chemical Composition and Pharmacological Properties",doi:"10.5772/intechopen.86573",slug:"essential-oil-s-chemical-composition-and-pharmacological-properties",totalDownloads:1633,totalCrossrefCites:3,totalDimensionsCites:9,hasAltmetrics:0,abstract:"Essential oil, sent by nature, is a complex mixture of volatile secondary metabolites. Its composition varies along with many parameters that can lead to misunderstanding of its wonderful pharmacological property. In fact, from post-harvest treatment to the compound’s identification through extraction approaches, the original chemotype of essential oils can be misdescribed. The pharmacological potentials of these oils are well known in the traditional system since time immemorial. Nowadays, some chemotypes of these oils had shown the effect against WHO’s top 10 killer diseases. But the misuses of these essential oils are in part due to the lack of robust and easy analysis strategy that can allow the quality of the essential oils.",signatures:"Jean Baptiste Hzounda Fokou, Pierre Michel Jazet Dongmo and Fabrice Fekam Boyom",downloadPdfUrl:"/chapter/pdf-download/68008",previewPdfUrl:"/chapter/pdf-preview/68008",authors:[{id:"64481",title:"Dr.",name:"Pierre Michel",surname:"Jazet",slug:"pierre-michel-jazet",fullName:"Pierre Michel Jazet"},{id:"284188",title:"Dr.",name:"Jean Baptiste",surname:"Hzounda Fokou",slug:"jean-baptiste-hzounda-fokou",fullName:"Jean Baptiste Hzounda Fokou"},{id:"299314",title:"Prof.",name:"Fekam Boyom",surname:"Fabrice",slug:"fekam-boyom-fabrice",fullName:"Fekam Boyom Fabrice"}],corrections:null},{id:"68027",title:"Biological Importance of Essential Oils",doi:"10.5772/intechopen.87198",slug:"biological-importance-of-essential-oils",totalDownloads:2018,totalCrossrefCites:18,totalDimensionsCites:25,hasAltmetrics:0,abstract:"Essential oils are the volatile compounds having the oily fragrance. Essential oils are obtained from the different plant parts, and they are extracted from the different techniques and the most preferable method of extraction is the hydrodistillation which is cheap and easy to use. Plant parts including the flowers, leaves, stem, bark and roots are used for the isolation of essential oils. Essential oils are used in almost every field of life and because of these characteristics, the market of essential oils is growing rapidly. Essential oils are used in the aromatherapy and act as antioxidant, antimicrobial, antifungal, pain relievers, anxiety, depression. In the field of cosmetics and industries, the essential oils are used rapidly and mostly used in the perfume industries which are growing increasingly. Essential oils are used in the food preservations and many food items. Essential oils are used as the folk herbal medicines and their fragrance is used for the improvement of the mood and as the depression release.",signatures:"Muhammad Irshad, Muhammad Ali Subhani, Saqib Ali and Amjad Hussain",downloadPdfUrl:"/chapter/pdf-download/68027",previewPdfUrl:"/chapter/pdf-preview/68027",authors:[{id:"286484",title:"Dr.",name:"Muhammad",surname:"Irshad",slug:"muhammad-irshad",fullName:"Muhammad Irshad"},{id:"304731",title:"Mr.",name:"Muhammad",surname:"Ali Subhani",slug:"muhammad-ali-subhani",fullName:"Muhammad Ali Subhani"},{id:"316772",title:"Dr.",name:"Amjad",surname:"Hussain",slug:"amjad-hussain",fullName:"Amjad Hussain"},{id:"316773",title:"Dr.",name:"Saqib",surname:"Ali",slug:"saqib-ali",fullName:"Saqib Ali"}],corrections:null},{id:"67434",title:"Essential Oils: Partnering with Antibiotics",doi:"10.5772/intechopen.86575",slug:"essential-oils-partnering-with-antibiotics",totalDownloads:1151,totalCrossrefCites:0,totalDimensionsCites:6,hasAltmetrics:0,abstract:"Essential oils (EO) are volatile, non-lipid-based oils produced as a plant defense mechanism. Studies from our group have validated the potential usefulness of EOs to synergistically and additively work with antibiotics. In this book chapter, we aim to outline some background on the EOs and their uses and applications, to discuss the different mechanisms of action in partnering with antibiotics, and, finally, to explore their potential use against multidrug-resistant bacteria. Applications of EO in therapy will enable the revival of previously sidelined antibiotics and enhance the development of new drug regimens to better mitigate what may be the biggest health challenge by year 2050.",signatures:"Mariam Aljaafari, Maryam Sultan Alhosani, Aisha Abushelaibi, Kok-Song Lai and Swee-Hua Erin Lim",downloadPdfUrl:"/chapter/pdf-download/67434",previewPdfUrl:"/chapter/pdf-preview/67434",authors:[{id:"190224",title:"Dr.",name:"Swee Hua Erin",surname:"Lim",slug:"swee-hua-erin-lim",fullName:"Swee Hua Erin Lim"},{id:"221544",title:"Dr.",name:"Kok-Song",surname:"Lai",slug:"kok-song-lai",fullName:"Kok-Song Lai"},{id:"297610",title:"Ms.",name:"Mariam",surname:"Aljafari",slug:"mariam-aljafari",fullName:"Mariam Aljafari"},{id:"297611",title:"Ms.",name:"Maryam Sultan",surname:"Alhosani",slug:"maryam-sultan-alhosani",fullName:"Maryam Sultan Alhosani"},{id:"297612",title:"Dr.",name:"Aisha",surname:"Abushelaibi",slug:"aisha-abushelaibi",fullName:"Aisha Abushelaibi"}],corrections:null},{id:"67394",title:"Essential Oils in the Development of New Medicinal Products",doi:"10.5772/intechopen.86572",slug:"essential-oils-in-the-development-of-new-medicinal-products",totalDownloads:884,totalCrossrefCites:1,totalDimensionsCites:2,hasAltmetrics:0,abstract:"The essential oils present a complex composition of different chemical compounds, where they present synergic or complementary action among each other, modifying their activity. Among its main components we can find the terpenoids and phenylpropanoids, which are responsible for giving the medicinal properties. Essential oils generally have a pleasant and intense odor, mostly in liquid form, found in different plant organs and are soluble in polar solvents. Essential oils are volatile, and are widely used in the perfume industry, cosmetics, food and beverage aroma, as well as use in aromatherapy to treat some diseases. The traditional knowledge of some plant species with phytotherapeutic properties is currently a source for research in the search for new biologically active compounds and as effective therapeutics that contemplate current health care.",signatures:"Jason Jerry Atoche Medrano",downloadPdfUrl:"/chapter/pdf-download/67394",previewPdfUrl:"/chapter/pdf-preview/67394",authors:[{id:"284047",title:"Dr.",name:"Jason Jerry",surname:"Atoche Medrano",slug:"jason-jerry-atoche-medrano",fullName:"Jason Jerry Atoche Medrano"}],corrections:null},{id:"67466",title:"Essential Oil and Glandular Hairs: Diversity and Roles",doi:"10.5772/intechopen.86571",slug:"essential-oil-and-glandular-hairs-diversity-and-roles",totalDownloads:1359,totalCrossrefCites:7,totalDimensionsCites:10,hasAltmetrics:1,abstract:"The accumulation of essential oils in plants is generally limited to specialized secretory structures, namely, glandular trichomes (hairs) which are multicellular epidermal glands, found in some families such as Lamiaceae, Asteraceae, and Solanaceae, and which secrete terpenes in an extracellular cavity at the apex of the trichome. Storage of terpenoids in these structures can also be used to limit the risk of toxicity to the plant itself. The morphology of these structures varies according to the conditions of irrigation and also according to the toxicity of intracuticular contents and can be changed with the phenology of the plant. The secretory glands of aromatic plants come in different shapes and sizes, in order to ensure a specific function. This function consists mainly in the protection of different plant organs and the attraction of pollinators. Some scientist classified these glands into peltate hairs and capitate hairs, based on morphological criteria; however, others classified them into short-term glands and long-term glands, based on the mode of secretion. Short-term glands are glands that secrete rapidly to protect young organs. The long-term glands are glands in which the secretory substance accumulates gradually in the subcuticular space and play a role in the protection of mature organs such as the flower, as well as in pollination. According to this definition, he inferred that the capitate hairs are the short-term glands, while the peltate hairs are long-term glands. The difference between these two types of glands consists several aspects like structure, mode of secretion, and timing of secretion. In this object, this chapter includes some microscopic observation to glandular hairs and their combination with mode of secretion, nature of contents, and phenology of plant to give a good comprehension and classification.",signatures:"Zakaria Hazzoumi, Youssef Moustakime and Khalid Amrani Joutei",downloadPdfUrl:"/chapter/pdf-download/67466",previewPdfUrl:"/chapter/pdf-preview/67466",authors:[{id:"275448",title:"Ph.D.",name:"Zakaria",surname:"Hazzoumi",slug:"zakaria-hazzoumi",fullName:"Zakaria Hazzoumi"},{id:"294554",title:"Dr.",name:"Youssef",surname:"Moustakime",slug:"youssef-moustakime",fullName:"Youssef Moustakime"},{id:"294555",title:"Prof.",name:"Khalid",surname:"Amrani Joutei",slug:"khalid-amrani-joutei",fullName:"Khalid Amrani Joutei"}],corrections:null},{id:"67937",title:"Effect of Essential Oils on Storability and Preservation of Some Vegetable Crops",doi:"10.5772/intechopen.87213",slug:"effect-of-essential-oils-on-storability-and-preservation-of-some-vegetable-crops",totalDownloads:812,totalCrossrefCites:0,totalDimensionsCites:1,hasAltmetrics:0,abstract:"Essential oils, as natural sprout inhibitor and safe fungicides, are a promising tool and good alternative compounds otherwise synthetic due to their high efficacy, biodegradability, eco-safety and volatile nature. They are consisting of a number of various components, i.e., terpenes, phenols, alcohols, esters, aldehydes and ketones in different composition or combinations. These effective compounds supply excess to prevent sprouting in potatoes and Jerusalem artichoke (JA) and less chance to development of resistance in fungi in JA, strawberry and broccoli with low concentrations. On contrary, high concentration of these oils induce the germination of seeds like broccoli and carob. This chapter explains the practical application of using essential oils as natural antisprouting, inducing quality, preserving fungal diseases, eco-friendly compounds, alternating synthetic chemicals, giving high benefits and easy to apply. The foliar application with essential oils increases the productivity, quality and marketable yield and storability and reduces weight losses and decay. Moreover, the essential oils increase broccoli seed germination, antioxidant content and other phytochemical parameters. The chapter provides a novel anti-sprouting agent for inhibiting growth of processing potato tubers and identification of terpenoids that use to inhibit tuber sprouting as well as application of Chloropropham (CIPC) isopropyl-N-(3-chlorophenyl) carbamate as a conventional chemical inhibitor.",signatures:"Aml Abo El-Fetouh El-Awady",downloadPdfUrl:"/chapter/pdf-download/67937",previewPdfUrl:"/chapter/pdf-preview/67937",authors:[{id:"290398",title:"Ph.D.",name:"Aml",surname:"ElAwady",slug:"aml-elawady",fullName:"Aml ElAwady"}],corrections:null},{id:"68005",title:"Study of Essential Oils Obtained from Tropical Plants Grown in Colombia",doi:"10.5772/intechopen.87199",slug:"study-of-essential-oils-obtained-from-tropical-plants-grown-in-colombia",totalDownloads:1203,totalCrossrefCites:1,totalDimensionsCites:2,hasAltmetrics:0,abstract:"Researchers from several Colombian universities have joined efforts for over 15 years to characterize the composition and biological properties of more than a thousand samples of essential oils (EOs) obtained from aromatic plants collected during at least 30 botanical outings in different regions of Colombia. This chapter presents a brief description of essential oil extraction and chemical characterization techniques, followed by a representative list of references to publications on EO composition obtained from tropical aromatic plants that grow in Colombia. Opportunities for the development of interesting products for the pharmaceutical, cosmetics, hygiene, and food industries are illustrated with a few selected works on the evaluation of cytotoxicity, antioxidant, antiviral, antigenotoxic activities, and repellence of these essential oils.",signatures:"Elena Stashenko and Jairo René Martínez",downloadPdfUrl:"/chapter/pdf-download/68005",previewPdfUrl:"/chapter/pdf-preview/68005",authors:[{id:"90713",title:"Prof.",name:"Jairo René",surname:"Martínez",slug:"jairo-rene-martinez",fullName:"Jairo René Martínez"},{id:"169278",title:"Dr.",name:"Elena",surname:"Stashenko",slug:"elena-stashenko",fullName:"Elena Stashenko"}],corrections:null},{id:"67317",title:"Comparative Analysis of the Chemical Composition, Antimicrobial and Antioxidant Activity of Essential Oils of Spices Used in the Food Industry in Brazil",doi:"10.5772/intechopen.86576",slug:"comparative-analysis-of-the-chemical-composition-antimicrobial-and-antioxidant-activity-of-essential",totalDownloads:819,totalCrossrefCites:1,totalDimensionsCites:1,hasAltmetrics:0,abstract:"There are many food-borne pathogens in the wild and they are considered the cause of serious public health problems in both developed and developing countries. The use of natural products, such as antimicrobial compounds, has been increasing, in an attempt to control bacteria present in foods, mainly pathogens resistant to conventional antibiotics. This chapter is intended to provide the antimicrobial and antioxidant activity of essential oils of Cinnamomum zeylanicum (cinnamon), Origanum vulgare (oregano), Zingiber officinale (ginger), Rosmarinus officinalis (rosemary), Citrus latifolia (tahiti lemon) and Curcuma longa (saffron) as well as to determinate its chemical composition. The oils had been extracted by hydrodistillation with a Clevenger type apparatus and the antimicrobial activity was performed against standard strains Escherichia coli, Pseudomonas aeruginosa and Staphylococcus aureus. The antioxidant activity was carried out using the ABTS [2,2-azinobis-(3-ethylbenzothiazoline-6-sulfonic acid)] method. The essential oils presented a mixture of mono- and sesquiterpenes. The best minimum inhibitory concentration was determined to C. zeylanicum against S. aureus. O. vulgare antioxidant activity presented inhibition of 90.74% and EC50 of 14 μg mL−1. These results demonstrate that the essential oils analyzed presented efficient antibacterial activity and antioxidant action being able to satisfy the demand of use as control of microorganisms in the food.",signatures:"Amanda Mara Teles, Adenilde Nascimento Mouchreck, Gustavo Oliveira Everton, Ana Lucia Abreu-Silva, Kátia da Silva Calabrese and Fernando Almeida-Souza",downloadPdfUrl:"/chapter/pdf-download/67317",previewPdfUrl:"/chapter/pdf-preview/67317",authors:[{id:"223173",title:"Dr.",name:"Ana Lucia",surname:"Abreu-Silva",slug:"ana-lucia-abreu-silva",fullName:"Ana Lucia Abreu-Silva"},{id:"287290",title:"Dr.",name:"Fernando",surname:"Almeida-Souza",slug:"fernando-almeida-souza",fullName:"Fernando Almeida-Souza"},{id:"294926",title:"MSc.",name:"Amanda",surname:"Mara Teles",slug:"amanda-mara-teles",fullName:"Amanda Mara Teles"},{id:"294927",title:"Prof.",name:"Adenilde Nascimento",surname:"Mouchrek",slug:"adenilde-nascimento-mouchrek",fullName:"Adenilde Nascimento Mouchrek"},{id:"294929",title:"BSc.",name:"Gustavo Oliveira",surname:"Everton",slug:"gustavo-oliveira-everton",fullName:"Gustavo Oliveira Everton"},{id:"294930",title:"Dr.",name:"Kátia Da Silva",surname:"Calabrese",slug:"katia-da-silva-calabrese",fullName:"Kátia Da Silva Calabrese"}],corrections:null},{id:"66472",title:"Essential Oils and Microbial Communication",doi:"10.5772/intechopen.85638",slug:"essential-oils-and-microbial-communication",totalDownloads:1353,totalCrossrefCites:7,totalDimensionsCites:17,hasAltmetrics:0,abstract:"The World Health Organization highlighted the increase in the resistance to conventional antibiotics for most pathogens and observed also a decrease of the threshold for all mechanisms of cell-cell microbial communication, leading to the formation of biofilms and to the increase of microbial pathogenicity. Scientific community is therefore oriented to the identification and study of alternative substances to antibiotics. In such context, substances of vegetal source, such as essential oils (EOs), always used in traditional medicine, stimulated—particularly in recent decades—the scientific world to discover and identify substances, intended as a mixture or single components capable to fight pathogenic microorganisms. From this point of view, the study of plants is very interesting and offers many interesting ideas and results. This brief chapter describes the basis of the microbial communication, until the formation of biofilm, and some mechanisms through which essential oils, or some of their main components, may decrease or inactivate the complex mechanisms that lead to pathogenicity, both of prokaryotes and eukaryotes.",signatures:"Filomena Nazzaro, Florinda Fratianni, Antonio d’Acierno, Raffaele Coppola, Fernando Jesus Ayala-Zavala, Adriano Gomez da Cruz and Vincenzo De Feo",downloadPdfUrl:"/chapter/pdf-download/66472",previewPdfUrl:"/chapter/pdf-preview/66472",authors:[{id:"73391",title:"Prof.",name:"Vincenzo",surname:"De Feo",slug:"vincenzo-de-feo",fullName:"Vincenzo De Feo"},{id:"84639",title:"Dr.",name:"J. Fernando",surname:"Ayala-Zavala",slug:"j.-fernando-ayala-zavala",fullName:"J. Fernando Ayala-Zavala"},{id:"180581",title:"Dr.",name:"Filomena",surname:"Nazzaro",slug:"filomena-nazzaro",fullName:"Filomena Nazzaro"},{id:"287222",title:"Dr.",name:"Florinda",surname:"Fratianni",slug:"florinda-fratianni",fullName:"Florinda Fratianni"},{id:"287223",title:"Dr.",name:"Antonio",surname:"D'Acierno",slug:"antonio-d'acierno",fullName:"Antonio D'Acierno"},{id:"287225",title:"Prof.",name:"Adriano",surname:"Gomes Da Cruz",slug:"adriano-gomes-da-cruz",fullName:"Adriano Gomes Da Cruz"},{id:"293244",title:"Prof.",name:"Raffaele",surname:"Coppola",slug:"raffaele-coppola",fullName:"Raffaele Coppola"}],corrections:null},{id:"67486",title:"Application of Essential Oils for Shelf-Life Extension of Seafood Products",doi:"10.5772/intechopen.86574",slug:"application-of-essential-oils-for-shelf-life-extension-of-seafood-products",totalDownloads:957,totalCrossrefCites:2,totalDimensionsCites:5,hasAltmetrics:0,abstract:"This chapter will discuss the antimicrobial and antioxidant activities of various essential oils on possible shelf-life extension of different seafood products. Furthermore, the effect of antimicrobial coatings incorporated with various essential oils on the shelf-life of seafood products will be investigated. Microbiological and physico-chemical properties such as total count, psychrophilic and lactic acid bacterial count, peroxide test, thiobarbituric acid (TBA) test, total volatile basic nitrogen (TVB-N) test, and pH, also sensory evaluations of seafood products will be included. During this chapter the effect of chemical composition of some essential oils on the antimicrobial and antioxidant activities will be discussed briefly.",signatures:"Marzieh Moosavi-Nasab, Armin Mirzapour-Kouhdasht and Najme Oliyaei",downloadPdfUrl:"/chapter/pdf-download/67486",previewPdfUrl:"/chapter/pdf-preview/67486",authors:[{id:"140271",title:"Prof.",name:"Marzieh",surname:"Moosavi-Nasab",slug:"marzieh-moosavi-nasab",fullName:"Marzieh Moosavi-Nasab"},{id:"285671",title:"Mr.",name:"Armin",surname:"Mirzapour-Kouhdasht",slug:"armin-mirzapour-kouhdasht",fullName:"Armin Mirzapour-Kouhdasht"},{id:"285836",title:"Ms.",name:"Najme",surname:"Oliyaei",slug:"najme-oliyaei",fullName:"Najme Oliyaei"}],corrections:null},{id:"68287",title:"Seed Propagation and Constituents of the Essential Oil of Stevia serrata Cav. from Guatemala",doi:"10.5772/intechopen.88221",slug:"seed-propagation-and-constituents-of-the-essential-oil-of-em-stevia-serrata-em-cav-from-guatemala",totalDownloads:699,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Stevia serrata Cav. (Eupatorieae, Asteraceae) grows in Central America and Mexico usually over 1500 m. In this study, essential oils of aerial parts from three populations of western Guatemala were obtained yielding 0.17–0.27% of oil by hydrodistillation. Chamazulene (42–62%) was the most abundant compound in the oil analyzed GC/MS, also presenting germacrene D (4.4–15.3%), caryophyllene oxide (3.2–11.8%), (E)-nerolidol (3.9–7.1%), spathulenol (2.3–7.9%), and (E)-caryophyllene (2.5–6.6%). Besides, a propagation trial was carried out on seeds of plants collected in Santa Lucía Utatlán, as the first step for the domestication of the plant, obtaining approximately 75% survival in the transplanting of the germinated seedlings. After the flowering of the individuals, a greenish essential oil was obtained from the roots yielding 0.2% of oil. This oil did not present chamazulene, but α-longipinene (23.5%), germacrene D (22.2%), santolina triene (12.6%), and (E)-caryophyllene (8.1%) as major components. As conclusion, it was confirmed that the aerial parts of the essential oil of S. serrata from western Guatemala presents a high content of chamazulene and that there is feasibility for the domestication of the plant through the germination of seeds.",signatures:"Juan Francisco Pérez-Sabino, Max Samuel Mérida-Reyes, José Vicente Martínez-Arévalo, Manuel Alejandro Muñoz-Wug, Bessie Evelyn Oliva-Hernández, Isabel Cristina Gaitán-Fernández, Daniel Luiz Reis Simas and Antonio Jorge Ribeiro da Silva",downloadPdfUrl:"/chapter/pdf-download/68287",previewPdfUrl:"/chapter/pdf-preview/68287",authors:[{id:"287324",title:"Ph.D.",name:"Juan Francisco",surname:"Pérez-Sabino",slug:"juan-francisco-perez-sabino",fullName:"Juan Francisco Pérez-Sabino"},{id:"300501",title:"Dr.",name:"Antonio Jorge",surname:"Ribeiro Da Silva",slug:"antonio-jorge-ribeiro-da-silva",fullName:"Antonio Jorge Ribeiro Da Silva"},{id:"300502",title:"Mr.",name:"Max Samuel",surname:"Mérida-Reyes",slug:"max-samuel-merida-reyes",fullName:"Max Samuel Mérida-Reyes"},{id:"300503",title:"Mr.",name:"Manuel Alejandro",surname:"Muñoz-Wug",slug:"manuel-alejandro-munoz-wug",fullName:"Manuel Alejandro Muñoz-Wug"},{id:"300504",title:"MSc.",name:"Isabel Cristina",surname:"Gaitán-Fernández",slug:"isabel-cristina-gaitan-fernandez",fullName:"Isabel Cristina Gaitán-Fernández"},{id:"300507",title:"Dr.",name:"Daniel Luiz",surname:"Reis Simas",slug:"daniel-luiz-reis-simas",fullName:"Daniel Luiz Reis Simas"},{id:"300645",title:"Mrs.",name:"Bessie Evelyn",surname:"Oliva Hernández",slug:"bessie-evelyn-oliva-hernandez",fullName:"Bessie Evelyn Oliva Hernández"},{id:"300666",title:"Dr.",name:"José Vicente",surname:"Martínez-Arévalo",slug:"jose-vicente-martinez-arevalo",fullName:"José Vicente Martínez-Arévalo"}],corrections:null},{id:"67952",title:"Durable Woods and Antifungal Activity of Their Essential Oils: Case of Tetraclinis articulata (Vahl) Masters and Cedrus atlantica Manetti",doi:"10.5772/intechopen.87214",slug:"durable-woods-and-antifungal-activity-of-their-essential-oils-case-of-em-tetraclinis-articulata-em-v",totalDownloads:721,totalCrossrefCites:1,totalDimensionsCites:1,hasAltmetrics:0,abstract:"Cedrus atlantica Manetti and Tetraclinis articulata (Vahl) Masters are a resinous species originated from North Africa and well known for their durable and noble timbers. This work was conducted to assess the relationship between natural durability of their woods, assessed in previous works by European standards NF EN 350 and CEN/TS 15083-1, and the bioactivity of essential oils extracted from these woods by hydrodistillation and analyzed by GC-FID and GC-MS. Bioassay of sawdust essential oils, conducted by direct contact technique on agar medium on four wood-decaying fungi strains, revealed strong antifungal inhibition especially by T. articulata root burl oil due to its richness in phenols. Natural durability classes of T. articulata and C. atlantica woods were then positively correlated with antifungal activity levels of their oils.",signatures:"Abdelwahed Fidah, Mohamed Rahouti, Bousselham Kabouchi and Abderrahim Famiri",downloadPdfUrl:"/chapter/pdf-download/67952",previewPdfUrl:"/chapter/pdf-preview/67952",authors:[{id:"191705",title:"Ph.D.",name:"Abdelwahed",surname:"Fidah",slug:"abdelwahed-fidah",fullName:"Abdelwahed Fidah"},{id:"287259",title:"Prof.",name:"Mohamed",surname:"Rahouti",slug:"mohamed-rahouti",fullName:"Mohamed Rahouti"},{id:"287260",title:"Prof.",name:"Bouselham",surname:"Kabouchi",slug:"bouselham-kabouchi",fullName:"Bouselham Kabouchi"},{id:"287261",title:"Dr.",name:"Abderrahim",surname:"Famiri",slug:"abderrahim-famiri",fullName:"Abderrahim Famiri"}],corrections:null}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"},subseries:null,tags:null},relatedBooks:[{type:"book",id:"497",title:"Soybean and Nutrition",subtitle:null,isOpenForSubmission:!1,hash:"11aa0c9ed0f6ea8da765be93b50954bb",slug:"soybean-and-nutrition",bookSignature:"Hany El-Shemy",coverURL:"https://cdn.intechopen.com/books/images_new/497.jpg",editedByType:"Edited by",editors:[{id:"54719",title:"Prof.",name:"Hany",surname:"El-Shemy",slug:"hany-el-shemy",fullName:"Hany El-Shemy"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"496",title:"Soybean and Health",subtitle:null,isOpenForSubmission:!1,hash:"66d40dbc031b2825ba95f7ac2bfae1b6",slug:"soybean-and-health",bookSignature:"Hany El-Shemy",coverURL:"https://cdn.intechopen.com/books/images_new/496.jpg",editedByType:"Edited by",editors:[{id:"54719",title:"Prof.",name:"Hany",surname:"El-Shemy",slug:"hany-el-shemy",fullName:"Hany El-Shemy"}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,productType:{id:"1",chapterContentType:"chapter",authoredCaption:"Edited by"}},{type:"book",id:"495",title:"Soybean",subtitle:"Physiology and Biochemistry",isOpenForSubmission:!1,hash:"09e5f0af30214d460498f8d770e985cf",slug:"soybean-physiology-and-biochemistry",bookSignature:"Hany A. 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Renna, Rodrigo Garcia, Jesica Ramirez and Roberto M.\nMiatello",dateSubmitted:"May 26th 2016",dateReviewed:"January 16th 2017",datePrePublished:null,datePublished:"April 5th 2017",book:{id:"5682",title:"Physiologic and Pathologic Angiogenesis",subtitle:"Signaling Mechanisms and Targeted Therapy",fullTitle:"Physiologic and Pathologic Angiogenesis - Signaling Mechanisms and Targeted Therapy",slug:"physiologic-and-pathologic-angiogenesis-signaling-mechanisms-and-targeted-therapy",publishedDate:"April 5th 2017",bookSignature:"Dan Simionescu and Agneta Simionescu",coverURL:"https://cdn.intechopen.com/books/images_new/5682.jpg",licenceType:"CC BY 3.0",editedByType:"Edited by",editors:[{id:"66196",title:"Dr.",name:"Dan",middleName:"T.",surname:"Simionescu",slug:"dan-simionescu",fullName:"Dan Simionescu"}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"}},authors:[{id:"192616",title:"Dr.",name:"Nicolás",middleName:null,surname:"Renna",fullName:"Nicolás Renna",slug:"nicolas-renna",email:"nicolasfede@gmail.com",position:null,institution:{name:"National University of Cuyo",institutionURL:null,country:{name:"Argentina"}}},{id:"202536",title:"Dr.",name:"Rodrigo",middleName:"Damián",surname:"García",fullName:"Rodrigo García",slug:"rodrigo-garcia",email:"rodridg@hotmail.com",position:null,institution:null},{id:"202537",title:"Dr.",name:"Jesica",middleName:null,surname:"Ramirez",fullName:"Jesica Ramirez",slug:"jesica-ramirez",email:"jesicamagali@hotmail.com",position:null,institution:null},{id:"202539",title:"Dr.",name:"Roberto M.",middleName:null,surname:"Miatello",fullName:"Roberto M. 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Renna, Rodrigo Garcia, Jesica Ramirez and Roberto M.\nMiatello",dateSubmitted:"May 26th 2016",dateReviewed:"January 16th 2017",datePrePublished:null,datePublished:"April 5th 2017",book:{id:"5682",title:"Physiologic and Pathologic Angiogenesis",subtitle:"Signaling Mechanisms and Targeted Therapy",fullTitle:"Physiologic and Pathologic Angiogenesis - Signaling Mechanisms and Targeted Therapy",slug:"physiologic-and-pathologic-angiogenesis-signaling-mechanisms-and-targeted-therapy",publishedDate:"April 5th 2017",bookSignature:"Dan Simionescu and Agneta Simionescu",coverURL:"https://cdn.intechopen.com/books/images_new/5682.jpg",licenceType:"CC BY 3.0",editedByType:"Edited by",editors:[{id:"66196",title:"Dr.",name:"Dan",middleName:"T.",surname:"Simionescu",slug:"dan-simionescu",fullName:"Dan Simionescu"}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"}},authors:[{id:"192616",title:"Dr.",name:"Nicolás",middleName:null,surname:"Renna",fullName:"Nicolás Renna",slug:"nicolas-renna",email:"nicolasfede@gmail.com",position:null,institution:{name:"National University of Cuyo",institutionURL:null,country:{name:"Argentina"}}},{id:"202536",title:"Dr.",name:"Rodrigo",middleName:"Damián",surname:"García",fullName:"Rodrigo García",slug:"rodrigo-garcia",email:"rodridg@hotmail.com",position:null,institution:null},{id:"202537",title:"Dr.",name:"Jesica",middleName:null,surname:"Ramirez",fullName:"Jesica Ramirez",slug:"jesica-ramirez",email:"jesicamagali@hotmail.com",position:null,institution:null},{id:"202539",title:"Dr.",name:"Roberto M.",middleName:null,surname:"Miatello",fullName:"Roberto M. 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\r\n\tMarine Ecosystems are very productive and include the open ocean, the deep-sea ocean, and coastal marine ecosystems, each of which has different physical and biological characteristics. The biodiversity of some of these ecosystems is very rich and abundant offering unique opportunities for high-yield production of proteinaceous material, being a source of high-quality foods. Biodiversity is fundamental to sustaining marine ecosystem services, such as food, maintenance of water quality, and recovery from perturbations, being threatened worldwide. The main threats to marine biodiversity are habitat loss, eutrophication, overexploitation, pollution by hazardous substances, the introduction of non-native species, and other human activities. Efforts to reduce these pressures are essential for coastal water quality, recovery of ecosystem services, global food security, and ecosystem stability. Bioindicators to assess the presence of stressors are important tools to be used as early warning signals to early detect their presence, monitor and management of these ecosystems, and thus promote ecosystem health.
\r\n
\r\n\t \r\n\tThe protection of biodiversity is a major target of the European Union Marine Strategy Framework Directive, requiring an assessment of the status of biodiversity on the level of species, habitats, and ecosystems including genetic diversity and the role of biodiversity in food web structure and functioning. The restoration of marine ecosystems can support the productivity and reliability of goods and services that the ocean provides to humankind, to maintain ecosystem integrity and stability. Some of the goods produced by the marine ecosystem services are fish harvests, wild plant and animal resources, water, some of the services provided recreation, tourism, breeding and nursery habitats, water transport, carbon sequestration, erosion control, and habitat provision.
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During her research career obtained several grants is highly international competitive calls, including the MARS award for young scientists funded by The Royal Netherlands Institute for Sea Research (NIOZ) and the Foundation for Science and Technology (FCT, Portugal) grants.",coeditorOneBiosketch:null,coeditorTwoBiosketch:null,coeditorThreeBiosketch:null,coeditorFourBiosketch:null,coeditorFiveBiosketch:null,editors:[{id:"320124",title:"Dr.",name:"Ana M.M.",middleName:"Marta",surname:"Gonçalves",slug:"ana-m.m.-goncalves",fullName:"Ana M.M. Gonçalves",profilePictureURL:"https://mts.intechopen.com/storage/users/320124/images/system/320124.jpg",biography:"Ana Marta Gonçalves obtained a Ph.D. in Biology with a specialization in Ecology from the University of Coimbra, Portugal, in collaboration with Ghent University, Belgium, in 2011. Currently, she is an auxiliary researcher at the Marine and Environmental Sciences Center (MARE), Portugal, where she is also a member of the Directive Board. 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From chapter submission and review, to approval and revision, copyediting and design, until final publication, I work closely with authors and editors to ensure a simple and easy publishing process. I maintain constant and effective communication with authors, editors and reviewers, which allows for a level of personal support that enables contributors to fully commit and concentrate on the chapters they are writing, editing, or reviewing. I assist authors in the preparation of their full chapter submissions and track important deadlines and ensure they are met. I help to coordinate internal processes such as linguistic review, and monitor the technical aspects of the process. As an ASM I am also involved in the acquisition of editors. 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1. Introduction
Phytoremediation, which is derived from the words “phyto” (plant) and “remediation” (recovery) and has become a term in 1991, can be also defined as “bioremediation,” “botanical remediation” and “green remediation.” Phytoremediation is a term which is related to ecological remediation technologies that use plants as the main source. With this technology, organic and inorganic substances are removed from the contaminated area by using plants. The effects of this method can be observed in low polluted areas in a short time. The negative aspect is that in heavy contaminated areas the plants cannot be useful in a period of short time [1, 2]. The plants which are identified as metal hyper-accumulators and wild, are able to remove contaminant elements 10–500 times higher compared to the ones that are cultivated [3].
Phytoremediation method is ecological, does not need special equipment during application and provides a re-usable land. The root depths and climatic conditions play an important role in the efficiency of the system. First of all, the soil must be appropriate to the needs of the plant for the removal of the contaminants from the soil by the plant. The pH of the soil is one of the most important parameters. The pH levels of the area must be between 5.8 and 6.5 for the nutrient elements to be taken [4]. The absorption of the contaminants and their accumulation by the plants is presented in the Figure 1.
Figure 1.
Heavy metal absorption and accumulation in root and shoot of the plant [5].
The nutrient element absorption is completed in three stages: (1) the transportation of the nutrients to the root circle and root surface; (2) the absorption of the nutrient ions into the roots; and (3) the transportation of the nutrient ions which entered into the root to the necessary parts by the transmission branches. There are two basic theories in the transportation of the nutrients to the root surface: “Intersection and Contact Change” and “Carbonic Acid Theory” [6].
2. Phytoremediation techniques
Phytoremediation, which has become more common in the last 10 years, is a passive technology which is related to soil recovery. Phytoremediation is the use of green plants in the removal of the contaminants from the area or in their recovery [7].
According to Salt et al. [8] phytoremediation techniques can be subcategorized as phytoextraction, phytodegradation, rhizofiltration, phytostabilization, phytovolatilization and rhizodegradation. Phytoremediation techniques are very effective in the sterilization of the areas that are medium-contaminated and have slight risk.
2.1. Phytoextraction (vegetal assimilation)
This technique is used in the absorption of the organic and inorganic contaminants by the roots and the sprigs of the plant. It is a valid method for the recovery of the contaminated areas, in which the plants that are able to absorb metals are chosen and the contaminants are removed from the soil with the harvesting or removal of the plant.
Because this technology’s application takes more time compared to other techniques, its application on heavy polluted areas is very hard. Also, a plant which grows in that ecosystem should be chosen. It should not be seasonal, because they will be harvested later. After they are harvested, they are burned in incinerator or exposed to another method with composition [9]. This method which is called phytomining, provides the opportunity for obtaining the mineral ores whose cultivation process is not economic. With this method, gold and nickel are re-gained in the USA [1, 10].
When the plants used in this method are compared to other plants, it can be observed that they can accumulate contaminant elements 100 times more. In this method Brassicacea, Euphorbiacea, Asteraceae, Lamiaceae and Scrophulariaceae and 400 other types are identified which can accumulate heavy metals. The residues of the harvested plants can be isolated by drying, burning, composting and recycling to biological metal minerals [11].
2.2. Phytodegradation (vegetal degradation)
Phytodegradation is a method in which organic contaminants are degraded by the compounds that are produced by plants through metabolic processes. Vegetal degradation can be applied to soil, clay, sediment and underground waters. The most advantageous aspect of the method is that the reduction and degradation occur inside the plant as a physiological process, and do not depend on microorganisms, while the emergence of toxic intermediate and end-use products, and the difficulty of their detection create a disadvantage [10].
The absorption of the organic compounds into the plant depends on the plant type, the residence duration of the contaminant element in the soil, and the soil’s physical and chemical form. The easily dissolved compounds are difficult to absorb. Plant enzymes are known to be able to degrade hazardous substances such as herbicides, munitions wastes and chlorinated solvents (trichloroethane (TCE)) [11].
2.3. Phytostabilization (root stabilization)
This method is used in the stabilization of soil. Phytostabilization plants are able to tolerate heavy metal levels and immobilize the metals through sorption, sedimentation, complexation or reduction of metal valences. The contamination factors in soil occur as a result of the immobilization of the contaminants around the plant roots, their accumulation by the roots, cohesion or sedimentation around the roots [12].
Wang et al. [13] conducted a research on the development and Cu absorption of corn plant (Zea mays L.) which is inoculated or non-inoculated by Acaulospora mellea, an arbuscular mycorrhizal fungus, by using different doses of Cu-applied pots in laboratory conditions. They concluded that the low absorption of the plants in the high concentrated Cu pots results from the soil’s pH value. They observed that the concentration and the structures of the organic acids in the soil such as malic acid, citric acid and oxalate acid were modified by the fungus. The researchers revealed that Acaulospora mellea is not suitable for the phytoextraction of copper by the corn plant; however, mycorrhizal plants are more applicable for phytoextraction because of their high capacity of Cu absorption in their roots.
On the other hand, contaminants’ transportation by wind, water erosion, washing out or soil dissemination can be prevented. In a system which is closely related to the plant’s root environment microbiology and chemistry, the plant is able to modify the contaminant factor’s form into non-resoluble or non-transported in water [1, 2].
2.4. Phytovolatilization (vegetal evaporation)
The root depth is very crucial in phytovolatilization. If it is about underground waters, the roots should be deep. To sterilize contaminated underground waters, the water can also be pumped to the ground to provide absorption for the surface roots. The most important aspect of this method is the transformation of the excessive toxic compounds (mercury contained compounds) into less toxic forms. However, the potential release of these hazardous and toxic materials into the atmosphere is a disadvantage [1]. The contaminants can be removed from the plant by transpiration or evaporation. As a well-known fact, water is carried from the roots to the leaves with the help of vascular system; therefore, the contaminants are released to the air through evaporation or volatilization. Poplar tree can be an example for this mechanism [9].
Ghosh and Singh [14] pointed out that some plants such as Brassica juncea and Arabidopsis thaliana can release heavy metals to the atmosphere with phytovolatilization by absorbing and transforming them into gas form.
Some types of trees such as Populus and Salix are often used in phytovolatilization because of their capacity to take contaminants with phytoremediation [15].
2.5. Rhizodegradation (the use of roots for degradation)
Rhizodegradation is the decomposition of the organic contaminants in soil surrounding the roots of the plants as a result of microorganism activities. There are amino acids, sugar, organic acid, sterol, fat acids, growing factors, nucleotide, flavanone and enzymes which are released from the plant’s roots and affect the microbial activities in the surrounding area of the roots. The most important benefit of Rhizodegradation method is the dissolution of the contaminants in their natural environment [1, 2].
Pesticides (herbicide, insecticide), benzene, toluene, ethylbenzene, xylene (BTEX), total petroleum hydrocarbon (TPH), polycyclic aromatic hydrocarbons (PAH), surface active substances, chlorinated solvents (TCE, TCA), pentachlorophenol (PCP) polychlorinated biphenyls (PCB) can be exemplified as contaminants that can be dissolved with Rhizodegradation. Mint (Mentha spicata L.), red berry (Morus rubra L.), lucerne (Medicago sativa L.), and reedmace (Typha latifolia L.) are used in Rhizodegradation method [1, 4, 16, 17].
2.6. Rhizofiltration (the use of roots for filtration)
In rhizofiltration method, contaminants cling to the roots or absorbed by the roots in accordance with biotic and abiotic processes. During these processes, contaminants may be taken or transported by the plant. What is important is to maintain the immobilization of the contaminants in or on the plants. Later on, the contaminants can be taken from the plants with different methods. This method is applied to underground waters, surface waters and waste waters [4, 18].
Rhizofiltration is used to remove the radioactive substances or metals from the contaminated waters. The plants which are used in this method are directly planted on the contaminated soil and the contaminant’s adaptation is ensured. The plants are raised hydroponically in clean water instead of soil until they have a wide root system. The rooted plants are transported to the contaminated water source in order to make them adapt to their new environment. When the roots become saturated the plants are harvested. This method provides an opportunity for the use of terrestrial and aquatic plants. It is also used in basins, tanks, and ponds besides natural environment [8, 12].
2.7. Phytohydraulic control
Hydraulic control is a method which prevents and controls the accumulation and transportation of the contaminants by using plants. This method is applied to both underground and surface waters. The advantageous aspect of this method is the wide impact area because of the expansion of the roots without any artificial system. However, the instability of water absorption depending on season and climate is a disadvantage.
According to Pivetz [10], a 5-year-old Populus tree can absorb 100–200 liters of water in a day. A single salix tree’s amount of perspiration is claimed to be 5000 gallon of water in a day. Salix, hybrid populous and Eucalyptus can be used in this method. The Phytohydraulic control method is generally used in the dissolution of organic and inorganic water-soluble contaminants [1].
2.8. Vegetative cover systems
Vegetative cover is a method in which the contaminants are controlled by the long-term and self-growing vegetative system. Vegetative cover systems expand over or inside of the substances with environmental risks and require minimum care. Vegetative cover is generally set up as barriers that prevent the expansion of contamination [1].
Vegetative covers are applied to the contaminant area or to the surface around the units that spread the contaminants. This system is planned to be used in the USA as an alternative in covering solid waste storage areas considering it as a cheap ecosystem which minimizes surface erosion by regenerating itself [1, 4, 10]. However, the constant control of the necessary long-term maintenance of the cover system creates a disadvantage, because some plant types may dominate the others in the course of time [19].
2.9. Buffer strips and riparian corridors
Buffer strips and riparian corridors are systems in which the suitable plants are planted in stripes throughout stream rank in order to remove the contaminants in underground and surface waters that stream towards the rivers [4, 10].
This method prevents the water contaminants to spread and interfuse into ground water. The studies conducted in Canada revealed that this system removes soil erosion up to 90%, and herbicides up to 42–70% [20].Buffer strips method is mostly used in many countries in the removal of contamination caused by fertilizers and pesticides. Populus is the most used tree in this method [1].
This method is mainly used in the removal the contaminants in underground and surface waters that stream towards the rivers by plantation in stripes throughout stream rank. Therefore, the water contaminants are prevented to spread and interfuse into ground water. On the other hand, erosion is controlled and sediment is reduced. The studies have shown that this system removes sediment in water up to 71–90%, nitrogen up to 67–96%, phosphorus up to 27–97% pesticides up to 8–100% and fecal coliforms up to 70–74% [19, 20].
3. Phytoextraction of heavy metals with Canola in model field
We performed the phytoextraction with canola in the model fields to estimate ant effectiveness.
3.1. Experimental conditions
The experiment is conducted on the research fields of Faculty of Agriculture, Namık Kemal University, Turkey, according to the randomized block design with 3 replicates. 100 mg/kg Co, Cr, Ni and Pb ions are taken from CoSO4, Cr(NO3)3, NiSO4 and Pb(NO3)2 compounds and applied to the soil as contaminants. There are 51 parcels with 4 contaminants (CoSO4, Cr(NO3)3, NiSO4 and Pb(NO3)2) × 4 chelate doses (EDTA) (0, 5, 10 and 15 mmol/kg) × 3 replicates + 3 control. The control parcels in which the contaminants and chelate are not applied are organized as three replicates. Each parcel in the test are sized as (3 × 1.2 m): 3.6 m2 including four rows (for instance for lead element PbEDTA0, PbEDTA5, PbEDTA10 and PbEDTA15). The row distance in each parcel is 30 cm, the distance between each parcel is 0.5 m and between each block is 1.5 m. The height of each block is 3 m and the width is 31.2 m (there are 4 parcels in each block). Therefore, a whole block is of 93.6 m2 and the total test area is of 284.6 m2, including the distances between the blocks (Figure 2).
Figure 2.
Different views from experiment fields (original).
3.2. Physical and chemical characteristics of the test soils
The physical and chemical characteristics of the samples taken from the testing field are presented in Table 1. According to the table, the soil’s pH is neutral, low lime and has insufficient organic matter. Its available phosphorus content is sufficient as well as the exchangeable potassium. The amount of available iron is average, available copper and manganese is sufficient, and available zinc is insufficient. Also, the testing soil is classified as clay in terms of texture [21, 22].
Soil properties
Unit
Values
pH (soil: water=1:2.5)
6.81
EC (x106)
dS/m
128.3
CaCO3
%
2.40
Organic matter
%
1.88
P2O5
kg/da
11.42
K2O
kg/da
25.32
Fe
mg/kg
3.46
Cu
mg/kg
0.63
Zn
mg/kg
0.40
Mn
mg/kg
5.72
Clay
%
42.98
Silt
%
25.44
Sand
%
31.58
Texture class
C
Table 1.
Some physical and chemical characteristics of the testing soil [23].
3.3. The amount of heavy metal (Cr, Co, Ni and Pb) before the test and after the incubation
The extractable Cr, Co, Ni and Pb contents of the testing fields are identified before the heavy metals are applied to the soil and they are presented in Table 2. 100 mg/kg Cr, Co, Ni and Pb are applied to the testing field and left to incubation for a month. The extractable heavy metal contents are determined after the incubation. T-test is applied to the results and the standard error values are given in Table 2.
The extractable heavy metal contents before and after the application of the contaminants to the testing soil.
p< 0.01.
When the Table 2 is examined, it can be observed that the amount of extractable heavy metal contents before the test is acceptable and does not have any contaminant characteristic [1]. A remarkable increase is observed as a result of 100 mg/kg Cr, Co, Ni, Pb heavy metal application upon one-month incubation. These increases are determined as 1% significant statistically.
3.4. The effects of EDTA applications on heavy metal contents (Cr, Co, Ni, Pb) of the root and shoot of the plant
The effects of increasing doses of EDTA applications on heavy metal contents (Cr, Co, Ni, Pb) of the root and shoot of the plant are presented in Table 3.
Canola
Chrome (Cr)
Cobalt (Co)
EDTA application
Root
Shoot
Root
Shoot
Control
2.75 ± 0.57a
4.23 ± 0.58a
1.95 ± 0.02a
2.18 ± 0.04a
0 mmol/kg
14.70 ± 007b
8.25 ± 0.56a
13.30 ± 0.08b
11.56 ± 1.39b
5 mmol/kg
29.16 ± 0.58c
26.42 ± 0.21b
28.60 ± 1.50c
24.45 ± 0.59c
10 mmol/kg
55.12 ± 0.99d
40.45 ± 1.05c
51.40 ± 2.61d
39.12 ± 1.14d
15 mmol/kg
70.50 ± 1.92e
52.20 ± 1.50d
75.40 ± 1.56e
45.20 ± 0.60e
Nickel (Ni)
Lead (Pb)
EDTA application
Root
Shoot
Root
Shoot
Control
4.76 ± 0.11a
5.83 ± 0.63a
3.78 ± 0.45a
4.96 ± 0.56a
0 mmol/kg
24.43 ± 0.13b
13.12 ± 0.97b
24.50 ± 0.97b
18.90 ± 0.54b
5 mmol/kg
49.65 ± 0.34c
37.60 ± 0.56c
41.40 ± 0.66c
35.20 ± 0.05c
10 mmol/kg
77.80 ± 0.60d
61.40 ± 0.28d
87.80 ± 0.90d
63.14 ± 1.14d
15 mmol/kg
85.30 ± 1.01e
65.10 ± 0.057e
95.40 ± 0.17e
70.12 ± 0.01e
Table 3.
The effects of EDTA applications on the amount of heavy metals (Cr, Co, Ni and Pb) in the roots and shoot of canola plant that were grew* (mg/kg) [23, 24, 25, 26].
Each heavy metal element, root and shoot is examined separately with three replicates.
The amount of Cr in the roots and shoot of the canola plant which grows on Cr-applied fields rapidly increased after 0 mmol/kg EDTA dose and reached the highest level with 15 mmol/kg EDTA dose. These increases were determined as 1% significant statistically.
Similar to the Chrome element, the amount of cobalt in the root and shoot of canola plant which grows on the cobalt-polluted field increased with EDTA applications. These increases were determined as 1% significant statistically (Table 3).
The amount of nickel in canola plant which grows on the field that has been polluted with nickel increased with EDTA applications, and the highest levels were achieved on the parcels which were applied with 15 mmol/kg EDTA dose. It can be concluded that with the increasing doses of EDTA, the Ni concentration in the roots and shoot of the plant has also increased. These increases were determined as 1% significant statistically and various groups are formed in Duncan multiple comparison test (Table 3).
The amount of Pb in canola plant which grows on the field that has been polluted with Pb increased with EDTA applications, and the highest levels were achieved on the parcels which were applied with 15 mmol/kg EDTA dose. It can be concluded that with the increasing doses of EDTA, the Pb concentration in the roots and shoot of the plant has also increased. These increases were determined as 1% significant statistically and various groups are formed in Duncan multiple comparison test (Table 3).
In Table 3, the amount of heavy metals (Cr, Co, Ni and Pb) in canola plant’s roots and shoot, Duncan multiple comparison test and standard error values are presented. According to Table 3, the amount of heavy metals in the roots is higher than the heavy metals in shoot.
According to Table 3, on the fields which are applied with 0 mmol/kg EDTA doses, the amount of Cr, Co, Ni and Pb heavy metals in the roots and shoot of the canola plant is lowest and the highest heavy metal level can be detected in 15 mmol/kg EDTA dose. The results are equal to other research results on this subject. The researchers have explained that the solubility and absorption of the heavy metals get easier for the plant with the increasing doses of EDTA application [27, 28, 29, 30, 31].
According to the results of this research, EDTA applications should be conducted by growing hyper-accumulator plants on the soils in order to decrease Cr, Co, Ni and Pb heavy metal contamination under the toxicity levels. Because, it has been proved that with the increasing doses of EDTA application some heavy metals (Cr, Co, Ni and Pb) can be removed from soil with phytoremediation (Phytoextraction) method.
4. Conclusion
According to the field experiment results, the amount of Cr, Co, Ni and Pb heavy metals, removed from the soil by the canola plant, increased with the increasing of EDTA applications. This increases and decreases were found statistically significant at the level of 1%. It was an expected rate, because application of chelates like EDTA on soil accelerates solubility of some heavy metals (Cr, Co, Ni and Pb) in soils and their absorption by plants. It was relatively expensive and limited in use to remove some heavy metals like Cr, Co, Ni and Pb which cause pollution in agricultural lands and are particularly results of industry-related human activities, from the soil by classical physiochemical methods.
Therefore, it becomes gradually important to remove Cr, Co, Ni and Pb heavy metals naturally from the agricultural lands by increasing its mobility in soil, with the help of various hyper accumulator plants such as canola, which are relatively inexpensive and practical in use but changeable concerning the concentrations and types of heavy metals.
\n',keywords:"phytoremediation, heavy metal, soil, pollution, plant",chapterPDFUrl:"https://cdn.intechopen.com/pdfs/56666.pdf",chapterXML:"https://mts.intechopen.com/source/xml/56666.xml",downloadPdfUrl:"/chapter/pdf-download/56666",previewPdfUrl:"/chapter/pdf-preview/56666",totalDownloads:2487,totalViews:1093,totalCrossrefCites:2,totalDimensionsCites:7,totalAltmetricsMentions:0,impactScore:2,impactScorePercentile:83,impactScoreQuartile:4,hasAltmetrics:0,dateSubmitted:"February 23rd 2017",dateReviewed:"July 6th 2017",datePrePublished:"December 20th 2017",datePublished:"April 4th 2018",dateFinished:"August 3rd 2017",readingETA:"0",abstract:"Heavy metal pollution in agricultural soil is one of the most important environmental problem for the different scientists, recently years. Heavy metal contamination in the agricultural soil is not only pollution but it also has dangerous effect on wild life and human life. The solution of this pollution problem by using classical traditional physical and chemical methods is too expensive. But, phytoremediation method is using for removal of heavy metal from agricultural soils, recently. This method is cheaper than classical traditional physical and chemical methods. Kinds of phytoremediation method are phytoextraction, phytodegradation, phytostabilization, phytovolatilization, rhizodegradation, rhizofiltration, phytohydraulic control, vegetative cover systems, buffer strips and riparian corridors. These kinds of phytoremediation methods were evaluated in this study.",reviewType:"peer-reviewed",bibtexUrl:"/chapter/bibtex/56666",risUrl:"/chapter/ris/56666",book:{id:"6062",slug:"advances-in-bioremediation-and-phytoremediation"},signatures:"Sevinç Adiloğlu",authors:[{id:"205818",title:"Associate Prof.",name:"Sevinç",middleName:null,surname:"Adiloğlu",fullName:"Sevinç Adiloğlu",slug:"sevinc-adiloglu",email:"sadiloglu@hotmail.com",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",institution:{name:"Namık Kemal University",institutionURL:null,country:{name:"Turkey"}}}],sections:[{id:"sec_1",title:"1. Introduction",level:"1"},{id:"sec_2",title:"2. Phytoremediation techniques",level:"1"},{id:"sec_2_2",title:"2.1. Phytoextraction (vegetal assimilation)",level:"2"},{id:"sec_3_2",title:"2.2. Phytodegradation (vegetal degradation)",level:"2"},{id:"sec_4_2",title:"2.3. Phytostabilization (root stabilization)",level:"2"},{id:"sec_5_2",title:"2.4. Phytovolatilization (vegetal evaporation)",level:"2"},{id:"sec_6_2",title:"2.5. Rhizodegradation (the use of roots for degradation)",level:"2"},{id:"sec_7_2",title:"2.6. Rhizofiltration (the use of roots for filtration)",level:"2"},{id:"sec_8_2",title:"2.7. Phytohydraulic control",level:"2"},{id:"sec_9_2",title:"2.8. Vegetative cover systems",level:"2"},{id:"sec_10_2",title:"2.9. Buffer strips and riparian corridors",level:"2"},{id:"sec_12",title:"3. Phytoextraction of heavy metals with Canola in model field",level:"1"},{id:"sec_12_2",title:"3.1. Experimental conditions",level:"2"},{id:"sec_13_2",title:"3.2. Physical and chemical characteristics of the test soils",level:"2"},{id:"sec_14_2",title:"3.3. The amount of heavy metal (Cr, Co, Ni and Pb) before the test and after the incubation",level:"2"},{id:"sec_15_2",title:"3.4. The effects of EDTA applications on heavy metal contents (Cr, Co, Ni, Pb) of the root and shoot of the plant",level:"2"},{id:"sec_17",title:"4. Conclusion",level:"1"}],chapterReferences:[{id:"B1",body:'EPA, (Environmental Protection Agency). Introduction to Phytoremediation, EPA/600/R-99/107. Ohio 45268, USA: National Risk Management Research Laboratory Office of Research and Development U.S. Environmental Protection Agency Cincinnati; 2000'},{id:"B2",body:'Yıldız N. Principles of Plant Nutrition and Disorders of Plant Nutrition in Plants. Erzurum: Atatürk University Agricultural Faculty. Eser Offset Printing; 2008. p. 304'},{id:"B3",body:'Ow DW. Heavy metal tolerance genes: Prospective tools for bioremediation resources. Conservation Recycling. 1996;18:135-149'},{id:"B4",body:'Vanlı Ö. Pb, Cd, B Elementlerinin Topraklardan Şelat Destekli Fitoremediasyon Yöntemiyle Giderilmesi. ABD: İTÜ, Fen Bil. Enst. Çevre Müh, Yüksek Lisans Tezi; 2007'},{id:"B5",body:'Eke M. Nikel Hiperakümülatörü Thlaspi Elegans Boiss’den Nikelin Asitle Ekstraksiyonu ve Elektrokimyasal Yolla Metal Olarak Geri Kazanımının Araştırılması. Mersin: Mersin Üniversitesi Fen Bilimleri Enstitüsü Çevre Anabilim Dalı Yüksek Lisans Tezi; 2010'},{id:"B6",body:'Karaman MR, Adiloğlu A, Brohi R, Güneş A, İnal A, Kaplan M, Katkat V, Korkmaz A, Okur N, Ortaş İ, Saltalı K, Taban S, Turan M, Tüfenkçi Ş, Eraslan F. ve Zengin M. Bitki Besleme. ISBN 978-605-87103-2-0 Dumat Ofset. Şti., Ankara: Matbacılık San. Tic. Ltd; 2012'},{id:"B7",body:'Raskin I, Smith RD, Salt DE. Phytoremediation of metals using plants to remove pollutants from the environment. Current Opinion in Biotechnology. 1997;8:221-226'},{id:"B8",body:'Salt DE, Smith RD, Raskin L. Phytoextraction of cadmium with Thlaspi caerulescens. Plant Molecular Biology. 1998;49:643-668'},{id:"B9",body:'EPA. Contaminants and Remedial Options at Select Metals – Contaminated Sites, EPA/540/R-95/512. National Risk Management Research Laboratory Office of Research and Development U.S. Environmental Protection Agency. Work EPA, (Environmental Protection Agency), 2000. Introduction to Phytoremediation, EPA/600/R-99/107, National Risk Management Research Laboratory Office of Research and Development U.S. Environmental Protection Agency Cincinnati, Ohio 45268, USA; 1995'},{id:"B10",body:'Pivetz BE. Ground Water Issue: Phytoremediation of Contaminated Soil and Ground Water at Hazardous Waste Sites. United States Environmental Protection Agency, EPA, 540/S–01/500; 2001. p. 36'},{id:"B11",body:'Memon AR, Aktopraklıgil D, Özdemir A, Vertii A. Heavy Metal Accumulation and Detoxification Mechanisms in Plants. TÜBITAK MAM. Kocaeli, Turkey: Institute for genetic Engineering and Biotechnology; 2000'},{id:"B12",body:'Mirsal IA. Soil pollution: Origin, Monitoring and Remediation. Springer–Verlag Berlin Heidelberg, Germany; 2004'},{id:"B13",body:'Türkoğlu B. Toprak Kirlenmesi Ve Kirlenmiş Toprakların Islahı. Adana: Çukurova Üniversitesi Fen Bilimleri Üniversitesi Toprak Anabilim Dalı Yüksek Lisan Tezi; 2006'},{id:"B14",body:'Wang FY, Lın XG, Yın R. Inoculation with arbuscular mycorrhizal fungus acaulospora mellea decreases Cu phytoextraction by maize from Cu–contaminated soil. Pedobiologia. 2007;51:99-109'},{id:"B15",body:'Ghosh M, Singh SP. A review on phytoremediation of heavy metals and utilization of its byproducts. Applied Ecology and Environmental Research. 2005;3:1-18'},{id:"B16",body:'Pulford ID, Watson C. Phytoremediation of heavy metal-contaminated land by trees: A review. Environment International. 2003;29:529-540'},{id:"B17",body:'Aybar M, Bilgin A, Sağlam B. Removing Heavy Metals from the Soil with Phytoremediation. Artvin Çoruh University Journal of Natural Hazards and Environment. 2015;1:59-65'},{id:"B18",body:'Söğüt Z, Zaimoğlu Z, Erdoğan RK, ve Doğan S. Su kalitesinin arttırılmasında bitki kullanımı (yeşil ıslah-Phytoremediation). Türkiye’nin Kıyı ve Deniz alanları IV. Ulusal Konferansı 5-8 Kasım 2002. Dokuz Eylül Üniversitesi, İzmir. Bildiriler Kitabı. II. Cilt: 2002. 1007-1016'},{id:"B19",body:'Kalkan H, Oraman Ş, ve Kaplan M. Kirlenmiş Arazilerin Islah Edilmesinde Fitoremidasyon Tekniği. Selçuk Üniversitesi Selçuk Tarım ve Gıda Bilimleri Dergis.,i. 2011;25(4):103-108'},{id:"B20",body:'Gabor TS, North AK, Ross LCM, Murkin HR, Anderson JS, Turner MA. Beyond the Pipe: The Importance of Wetlands and Upland Conservation Practises in Watershed Management: Function and Values for Water Quality and Quantity. Ducks Unlimited Canada; 2001. p. 55'},{id:"B21",body:'Alparslan M, Güneş A, ve İnal A. Deneme Tekniği. Ankara: A.Ü. Ziraat Fakültesi Yayın No:1501; 2005'},{id:"B22",body:'FAO. Micronutrient, Assesment and the Country Level: An International Study. Rome, Italy: FAO Soils Bulletin 63; 1990'},{id:"B23",body:'Adiloğlu S, Sağlam MS. Removal of lead (Pb) pollution in agricultural areas by phytoremediation method with the use of Canola (Brassica napus L.) plant. Proceedings of the 13th International Conference of Environmental Science and Technology, Athens, Greece; 2013'},{id:"B24",body:'Adiloğlu S, Sağlam MT, Süme A. Chrome (Cr) pollution in agricultural areas improvement by phytoremediation method with Canola (Brassica napus L.) plant growing. Journal of Essential Oil Bearing Plants. 2015;18(5):1180-1186'},{id:"B25",body:'Adiloğlu S, Sağlam MT, Adiloğlu A, Sümer A. Removal of nickel (Ni) from agricultural field soils by phytoremediation using Canola (Brassica napus L.). Desalination and Water Treatment. 2016;57(6):2383-2388'},{id:"B26",body:'Adiloğlu S. Using phytoremediation with Canola to remove cobalt from agricultural soils. Polish Journal of Environmental Studies. 2016;25(6):2251-2254'},{id:"B27",body:'McGrath SP, Shen ZG, Zhao FJ. Heavy metal uptake and chemical changes in the rhizosphere of Thlaspi caerulescens and Thlaspi ochroleucum grown in contaminated soils. Plant and Soil. 1997;188:153-159'},{id:"B28",body:'Epstein A, Gussman CD, Blaylock MJ, Yermiyahu U, Huang JW, Kapulnik Y, Orser C. EDTA and Pb-EDTA accumulation in Brassica juncea grown in Pb-amended soil. Plant and Soil. 1999;208:87-94'},{id:"B29",body:'Kirkham MB. EDTA-facilitated phytoremediation of soil with heavy metals from sewage sludge. International Journal of Phytoremediation. 2000;2:159-172'},{id:"B30",body:'Liphadzi MS, Kirkham MB, Mankin KR, Paulsen GM. EDTA-assisted heavy –metal uptake by poplar and sunflower grown at a long-term sewagesludge farm. Plant and Soil. 2003;257:171-182'},{id:"B31",body:'Esringü A. Toprakta Kirliliğe Sebep Olan Bazı Ağır Metallerin Kanola (Brassica nopus) ve Hardal (Brassica juncea) Bitkileri İle Uzaklaştırılması. Atatürk Üniversitesi Fen Bilimleri Enst. Toprak Anabilim Dalı, Yüksek Lisans Tezi; 2005'}],footnotes:[],contributors:[{corresp:"yes",contributorFullName:"Sevinç Adiloğlu",address:"sadiloglu@hotmail.com",affiliation:'
Department of Soil Science and Plant Nutrition, Faculty of Agriculture, Namık Kemal University, Tekirdağ, Turkey
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However, this laser machining can be used for all kinds of materials in most cases. 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If your research is financed through any of the below-mentioned funders, please consult their Open Access policies or grant ‘terms and conditions’ to explore ways to cover your publication costs (also accessible by clicking on the link in their title).
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IMPORTANT: You must be a member or grantee of the listed funders in order to apply for their Open Access publication funds. Do not attempt to contact the funders if this is not the case.
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UK Research and Innovation (former Research Councils UK (RCUK) - including AHRC, BBSRC, ESRC, EPSRC, MRC, NERC, STFC.) Processing charges for books/book chapters can be covered through RCUK block grants which are allocated to most universities in the UK, which then handle the OA publication funding requests. It is at the discretion of the university whether it will approve the request.)
UK Research and Innovation (former Research Councils UK (RCUK) - including AHRC, BBSRC, ESRC, EPSRC, MRC, NERC, STFC.) Processing charges for books/book chapters can be covered through RCUK block grants which are allocated to most universities in the UK, which then handle the OA publication funding requests. It is at the discretion of the university whether it will approve the request.)
Wellcome Trust (Funding available only to Wellcome-funded researchers/grantees)
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Delac received his B.Sc.E.E. degree in 2003 and is currentlypursuing a Ph.D. degree at the University of Zagreb, Faculty of Electrical Engineering andComputing. His current research interests are digital image analysis, pattern recognition andbiometrics.",institutionString:null,institution:{name:"University of Zagreb",country:{name:"Croatia"}}},{id:"557",title:"Dr.",name:"Andon",middleName:"Venelinov",surname:"Topalov",slug:"andon-topalov",fullName:"Andon Topalov",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/557/images/1927_n.jpg",biography:"Dr. Andon V. Topalov received the MSc degree in Control Engineering from the Faculty of Information Systems, Technologies, and Automation at Moscow State University of Civil Engineering (MGGU) in 1979. He then received his PhD degree in Control Engineering from the Department of Automation and Remote Control at Moscow State Mining University (MGSU), Moscow, in 1984. From 1985 to 1986, he was a Research Fellow in the Research Institute for Electronic Equipment, ZZU AD, Plovdiv, Bulgaria. In 1986, he joined the Department of Control Systems, Technical University of Sofia at the Plovdiv campus, where he is presently a Full Professor. He has held long-term visiting Professor/Scholar positions at various institutions in South Korea, Turkey, Mexico, Greece, Belgium, UK, and Germany. And he has coauthored one book and authored or coauthored more than 80 research papers in conference proceedings and journals. 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Aalborg University has Two Satellite Campuses, one in Copenhagen (Aalborg University Copenhagen) and the other in Esbjerg (Aalborg University Esbjerg).\n· He is a member of prestigious IEEE (Institute of Electrical and Electronics Engineers), and IAENG (International Association of Engineers) organizations. \n· He is the chief Editor of the Journal of Software Engineering.\n· He is the member of the Editorial Board of International Journal of Computer Science and Software Technology (IJCSST) and International Journal of Computer Engineering and Information Technology. \n· He is also the Editor of Communication in Computer and Information Science CCIS-20 by Springer.\n· Reviewer For Many Conferences\nHe is the lead person in making collaboration agreements between Aalborg University and many universities of Pakistan, for which the MOU’s (Memorandum of Understanding) have been signed.\nProfessor Akbar is working in Academia since 1990, he started his career as a Lab demonstrator/TA at the University of Sussex. After finishing his P. hD degree in 1992, he served in the Industry as a Scientific Officer and continued his academic career as a visiting scholar for a number of educational institutions. In 1996 he joined National University of Science & Technology Pakistan (NUST) as an Associate Professor; NUST is one of the top few universities in Pakistan. In 1999 he joined an International Company Lineo Inc, Canada as Manager Compiler Group, where he headed the group for developing Compiler Tool Chain and Porting of Operating Systems for the BLACKfin processor. The processor development was a joint venture by Intel and Analog Devices. In 2002 Lineo Inc., was taken over by another company, so he joined Aalborg University Denmark as an Assistant Professor.\nProfessor Akbar has truly a multi-disciplined career and he continued his legacy and making progress in many areas of his interests both in teaching and research. 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He has an excellent track record in the herpesvirus field, and his group is engaged in clinical research in the field of Epstein-Barr virus diseases. He is the editor of the online Encyclopedia of Environment and he coordinates the Universal Health Coverage education program for the BioHealth Computing Schools of the European Institute of Science.",institutionString:null,institution:{name:"Grenoble Alpes University",country:{name:"France"}}},{id:"131400",title:"Prof.",name:"Alfonso J.",middleName:null,surname:"Rodriguez-Morales",slug:"alfonso-j.-rodriguez-morales",fullName:"Alfonso J. Rodriguez-Morales",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/131400/images/system/131400.png",biography:"Dr. Rodriguez-Morales is an expert in tropical and emerging diseases, particularly zoonotic and vector-borne diseases (especially arboviral diseases). He is the president of the Travel Medicine Committee of the Pan-American Infectious Diseases Association (API), as well as the president of the Colombian Association of Infectious Diseases (ACIN). He is a member of the Committee on Tropical Medicine, Zoonoses, and Travel Medicine of ACIN. He is a vice-president of the Latin American Society for Travel Medicine (SLAMVI) and a Member of the Council of the International Society for Infectious Diseases (ISID). Since 2014, he has been recognized as a Senior Researcher, at the Ministry of Science of Colombia. He is a professor at the Faculty of Medicine of the Fundacion Universitaria Autonoma de las Americas, in Pereira, Risaralda, Colombia. He is an External Professor, Master in Research on Tropical Medicine and International Health, Universitat de Barcelona, Spain. He is also a professor at the Master in Clinical Epidemiology and Biostatistics, Universidad Científica del Sur, Lima, Peru. In 2021 he has been awarded the “Raul Isturiz Award” Medal of the API. Also, in 2021, he was awarded with the “Jose Felix Patiño” Asclepius Staff Medal of the Colombian Medical College, due to his scientific contributions to COVID-19 during the pandemic. He is currently the Editor in Chief of the journal Travel Medicine and Infectious Diseases. His Scopus H index is 47 (Google Scholar H index, 68).",institutionString:"Institución Universitaria Visión de las Américas, Colombia",institution:null},{id:"332819",title:"Dr.",name:"Chukwudi Michael",middleName:"Michael",surname:"Egbuche",slug:"chukwudi-michael-egbuche",fullName:"Chukwudi Michael Egbuche",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/332819/images/14624_n.jpg",biography:"I an Dr. Chukwudi Michael Egbuche. I am a Senior Lecturer in the Department of Parasitology and Entomology, Nnamdi Azikiwe University, Awka.",institutionString:null,institution:{name:"Nnamdi Azikiwe University",country:{name:"Nigeria"}}},{id:"284232",title:"Mr.",name:"Nikunj",middleName:"U",surname:"Tandel",slug:"nikunj-tandel",fullName:"Nikunj Tandel",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/284232/images/8275_n.jpg",biography:'Mr. Nikunj Tandel has completed his Master\'s degree in Biotechnology from VIT University, India in the year of 2012. He is having 8 years of research experience especially in the field of malaria epidemiology, immunology, and nanoparticle-based drug delivery system against the infectious diseases, autoimmune disorders and cancer. He has worked for the NIH funded-International Center of Excellence in Malaria Research project "Center for the study of complex malaria in India (CSCMi)" in collaboration with New York University. The preliminary objectives of the study are to understand and develop the evidence-based tools and interventions for the control and prevention of malaria in different sites of the INDIA. Alongside, with the help of next-generation genomics study, the team has studied the antimalarial drug resistance in India. Further, he has extended his research in the development of Humanized mice for the study of liver-stage malaria and identification of molecular marker(s) for the Artemisinin resistance. At present, his research focuses on understanding the role of B cells in the activation of CD8+ T cells in malaria. 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She is currently an Adjunct Professor at Feevale University in Medicine and Biomedicine courses and a permanent professor of the Academic Master\\'s Degree in Virology. She has experience in the field of Microbiology, with an emphasis on Bacteriology, working mainly on the following topics: bacteriophages, bacterial resistance, clinical microbiology and food microbiology.",institutionString:null,institution:{name:"Universidade Feevale",country:{name:"Brazil"}}},{id:"229220",title:"Dr.",name:"Amjad",middleName:"Islam",surname:"Aqib",slug:"amjad-aqib",fullName:"Amjad Aqib",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/229220/images/system/229220.png",biography:"Dr. Amjad Islam Aqib obtained a DVM and MSc (Hons) from University of Agriculture Faisalabad (UAF), Pakistan, and a PhD from the University of Veterinary and Animal Sciences Lahore, Pakistan. Dr. Aqib joined the Department of Clinical Medicine and Surgery at UAF for one year as an assistant professor where he developed a research laboratory designated for pathogenic bacteria. Since 2018, he has been Assistant Professor/Officer in-charge, Department of Medicine, Manager Research Operations and Development-ORIC, and President One Health Club at Cholistan University of Veterinary and Animal Sciences, Bahawalpur, Pakistan. He has nearly 100 publications to his credit. His research interests include epidemiological patterns and molecular analysis of antimicrobial resistance and modulation and vaccine development against animal pathogens of public health concern.",institutionString:"Cholistan University of Veterinary and Animal Sciences",institution:null},{id:"62900",title:"Prof.",name:"Fethi",middleName:null,surname:"Derbel",slug:"fethi-derbel",fullName:"Fethi Derbel",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/62900/images/system/62900.jpeg",biography:"Professor Fethi Derbel was born in 1960 in Tunisia. He received his medical degree from the Sousse Faculty of Medicine at Sousse, University of Sousse, Tunisia. He completed his surgical residency in General Surgery at the University Hospital Farhat Hached of Sousse and was a member of the Unit of Liver Transplantation in the University of Rennes, France. He then worked in the Department of Surgery at the Sahloul University Hospital in Sousse. Professor Derbel is presently working at the Clinique les Oliviers, Sousse, Tunisia. His hospital activities are mostly concerned with laparoscopic, colorectal, pancreatic, hepatobiliary, and gastric surgery. He is also very interested in hernia surgery and performs ventral hernia repairs and inguinal hernia repairs. He has been a member of the GREPA and Tunisian Hernia Society (THS). During his residency, he managed patients suffering from diabetic foot, and he was very interested in this pathology. For this reason, he decided to coordinate a book project dealing with the diabetic foot. Professor Derbel has published many articles in journals and collaborates intensively with IntechOpen Access Publisher as an editor.",institutionString:"Clinique les Oliviers",institution:null},{id:"300144",title:"Dr.",name:"Meriem",middleName:null,surname:"Braiki",slug:"meriem-braiki",fullName:"Meriem Braiki",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/300144/images/system/300144.jpg",biography:"Dr. Meriem Braiki is a specialist in pediatric surgeon from Tunisia. She was born in 1985. She received her medical degree from the University of Medicine at Sousse, Tunisia. She achieved her surgical residency training periods in Pediatric Surgery departments at University Hospitals in Monastir, Tunis and France.\r\nShe is currently working at the Pediatric surgery department, Sidi Bouzid Hospital, Tunisia. Her hospital activities are mostly concerned with laparoscopic, parietal, urological and digestive surgery. She has published several articles in diffrent journals.",institutionString:"Sidi Bouzid Regional Hospital",institution:null},{id:"229481",title:"Dr.",name:"Erika M.",middleName:"Martins",surname:"de Carvalho",slug:"erika-m.-de-carvalho",fullName:"Erika M. de Carvalho",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/229481/images/6397_n.jpg",biography:null,institutionString:null,institution:{name:"Oswaldo Cruz Foundation",country:{name:"Brazil"}}},{id:"186537",title:"Prof.",name:"Tonay",middleName:null,surname:"Inceboz",slug:"tonay-inceboz",fullName:"Tonay Inceboz",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/186537/images/system/186537.jfif",biography:"I was graduated from Ege University of Medical Faculty (Turkey) in 1988 and completed his Med. PhD degree in Medical Parasitology at the same university. I became an Associate Professor in 2008 and Professor in 2014. I am currently working as a Professor at the Department of Medical Parasitology at Dokuz Eylul University, Izmir, Turkey.\n\nI have given many lectures, presentations in different academic meetings. I have more than 60 articles in peer-reviewed journals, 18 book chapters, 1 book editorship.\n\nMy research interests are Echinococcus granulosus, Echinococcus multilocularis (diagnosis, life cycle, in vitro and in vivo cultivation), and Trichomonas vaginalis (diagnosis, PCR, and in vitro cultivation).",institutionString:"Dokuz Eylül University",institution:{name:"Dokuz Eylül University",country:{name:"Turkey"}}},{id:"71812",title:"Prof.",name:"Hanem Fathy",middleName:"Fathy",surname:"Khater",slug:"hanem-fathy-khater",fullName:"Hanem Fathy Khater",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/71812/images/1167_n.jpg",biography:"Prof. Khater is a Professor of Parasitology at Benha University, Egypt. She studied for her doctoral degree, at the Department of Entomology, College of Agriculture, Food and Natural Resources, University of Missouri, Columbia, USA. She has completed her Ph.D. degrees in Parasitology in Egypt, from where she got the award for “the best scientific Ph.D. dissertation”. She worked at the School of Biological Sciences, Bristol, England, the UK in controlling insects of medical and veterinary importance as a grant from Newton Mosharafa, the British Council. Her research is focused on searching of pesticides against mosquitoes, house flies, lice, green bottle fly, camel nasal botfly, soft and hard ticks, mites, and the diamondback moth as well as control of several parasites using safe and natural materials to avoid drug resistances and environmental contamination.",institutionString:null,institution:{name:"Banha University",country:{name:"Egypt"}}},{id:"99780",title:"Prof.",name:"Omolade",middleName:"Olayinka",surname:"Okwa",slug:"omolade-okwa",fullName:"Omolade Okwa",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/99780/images/system/99780.jpg",biography:"Omolade Olayinka Okwa is presently a Professor of Parasitology at Lagos State University, Nigeria. She has a PhD in Parasitology (1997), an MSc in Cellular Parasitology (1992), and a BSc (Hons) Zoology (1990) all from the University of Ibadan, Nigeria. She teaches parasitology at the undergraduate and postgraduate levels. She was a recipient of a Commonwealth fellowship supported by British Council tenable at the Centre for Entomology and Parasitology (CAEP), Keele University, United Kingdom between 2004 and 2005. She was awarded an Honorary Visiting Research Fellow at the same university from 2005 to 2007. \nShe has been an external examiner to the Department of Veterinary Microbiology and Parasitology, University of Ibadan, MSc programme between 2010 and 2012. She is a member of the Nigerian Society of Experimental Biology (NISEB), Parasitology and Public Health Society of Nigeria (PPSN), Science Association of Nigeria (SAN), Zoological Society of Nigeria (ZSN), and is Vice Chairperson of the Organisation of Women in Science (OWSG), LASU chapter. She served as Head of Department of Zoology and Environmental Biology, Lagos State University from 2007 to 2010 and 2014 to 2016. She is a reviewer for several local and international journals such as Unilag Journal of Science, Libyan Journal of Medicine, Journal of Medicine and Medical Sciences, and Annual Research and Review in Science. \nShe has authored 45 scientific research publications in local and international journals, 8 scientific reviews, 4 books, and 3 book chapters, which includes the books “Malaria Parasites” and “Malaria” which are IntechOpen access publications.",institutionString:"Lagos State University",institution:{name:"Lagos State University",country:{name:"Nigeria"}}},{id:"273100",title:"Dr.",name:"Vijay",middleName:null,surname:"Gayam",slug:"vijay-gayam",fullName:"Vijay Gayam",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/273100/images/system/273100.jpeg",biography:"Dr. Vijay Bhaskar Reddy Gayam is currently practicing as an internist at Interfaith Medical Center in Brooklyn, New York, USA. He is also a Clinical Assistant Professor at the SUNY Downstate University Hospital and Adjunct Professor of Medicine at the American University of Antigua. He is a holder of an M.B.B.S. degree bestowed to him by Osmania Medical College and received his M.D. at Interfaith Medical Center. His career goals thus far have heavily focused on direct patient care, medical education, and clinical research. He currently serves in two leadership capacities; Assistant Program Director of Medicine at Interfaith Medical Center and as a Councilor for the American\r\nFederation for Medical Research. As a true academician and researcher, he has more than 50 papers indexed in international peer-reviewed journals. He has also presented numerous papers in multiple national and international scientific conferences. His areas of research interest include general internal medicine, gastroenterology and hepatology. He serves as an editor, editorial board member and reviewer for multiple international journals. His research on Hepatitis C has been very successful and has led to multiple research awards, including the 'Equity in Prevention and Treatment Award” from the New York Department of Health Viral Hepatitis Symposium (2018) and the 'Presidential Poster Award” awarded to him by the American College of Gastroenterology (2018). He was also awarded 'Outstanding Clinician in General Medicine” by Venus International Foundation for his extensive research expertise and services, perform over and above the standard expected in the advancement of healthcare, patient safety and quality of care.",institutionString:"Interfaith Medical Center",institution:{name:"Interfaith Medical Center",country:{name:"United States of America"}}},{id:"93517",title:"Dr.",name:"Clement",middleName:"Adebajo",surname:"Meseko",slug:"clement-meseko",fullName:"Clement Meseko",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/93517/images/system/93517.jpg",biography:"Dr. Clement Meseko obtained DVM and PhD degree in Veterinary Medicine and Virology respectively. He has worked for over 20 years in both private and public sectors including the academia, contributing to knowledge and control of infectious disease. Through the application of epidemiological skill, classical and molecular virological skills, he investigates viruses of economic and public health importance for the mitigation of the negative impact on people, animal and the environment in the context of Onehealth. \r\nDr. Meseko’s field experience on animal and zoonotic diseases and pathogen dynamics at the human-animal interface over the years shaped his carrier in research and scientific inquiries. He has been part of the investigation of Highly Pathogenic Avian Influenza incursions in sub Saharan Africa and monitors swine Influenza (Pandemic influenza Virus) agro-ecology and potential for interspecies transmission. He has authored and reviewed a number of journal articles and book chapters.",institutionString:"National Veterinary Research Institute",institution:{name:"National Veterinary Research Institute",country:{name:"Nigeria"}}},{id:"158026",title:"Prof.",name:"Shailendra K.",middleName:null,surname:"Saxena",slug:"shailendra-k.-saxena",fullName:"Shailendra K. Saxena",position:null,profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRET3QAO/Profile_Picture_2022-05-10T10:10:26.jpeg",biography:"Professor Dr. Shailendra K. Saxena is a vice dean and professor at King George's Medical University, Lucknow, India. His research interests involve understanding the molecular mechanisms of host defense during human viral infections and developing new predictive, preventive, and therapeutic strategies for them using Japanese encephalitis virus (JEV), HIV, and emerging viruses as a model via stem cell and cell culture technologies. His research work has been published in various high-impact factor journals (Science, PNAS, Nature Medicine) with a high number of citations. He has received many awards and honors in India and abroad including various Young Scientist Awards, BBSRC India Partnering Award, and Dr. JC Bose National Award of Department of Biotechnology, Min. of Science and Technology, Govt. of India. Dr. Saxena is a fellow of various international societies/academies including the Royal College of Pathologists, United Kingdom; Royal Society of Medicine, London; Royal Society of Biology, United Kingdom; Royal Society of Chemistry, London; and Academy of Translational Medicine Professionals, Austria. He was named a Global Leader in Science by The Scientist. He is also an international opinion leader/expert in vaccination for Japanese encephalitis by IPIC (UK).",institutionString:"King George's Medical University",institution:{name:"King George's Medical University",country:{name:"India"}}},{id:"94928",title:"Dr.",name:"Takuo",middleName:null,surname:"Mizukami",slug:"takuo-mizukami",fullName:"Takuo Mizukami",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/94928/images/6402_n.jpg",biography:null,institutionString:null,institution:{name:"National Institute of Infectious Diseases",country:{name:"Japan"}}},{id:"233433",title:"Dr.",name:"Yulia",middleName:null,surname:"Desheva",slug:"yulia-desheva",fullName:"Yulia Desheva",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/233433/images/system/233433.png",biography:"Dr. Yulia Desheva is a leading researcher at the Institute of Experimental Medicine, St. Petersburg, Russia. She is a professor in the Stomatology Faculty, St. Petersburg State University. She has expertise in the development and evaluation of a wide range of live mucosal vaccines against influenza and bacterial complications. Her research interests include immunity against influenza and COVID-19 and the development of immunization schemes for high-risk individuals.",institutionString:'Federal State Budgetary Scientific Institution "Institute of Experimental Medicine"',institution:null},{id:"238958",title:"Mr.",name:"Atamjit",middleName:null,surname:"Singh",slug:"atamjit-singh",fullName:"Atamjit Singh",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/238958/images/6575_n.jpg",biography:null,institutionString:null,institution:null},{id:"333753",title:"Dr.",name:"Rais",middleName:null,surname:"Ahmed",slug:"rais-ahmed",fullName:"Rais Ahmed",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/333753/images/20168_n.jpg",biography:null,institutionString:null,institution:null},{id:"252058",title:"M.Sc.",name:"Juan",middleName:null,surname:"Sulca",slug:"juan-sulca",fullName:"Juan Sulca",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/252058/images/12834_n.jpg",biography:null,institutionString:null,institution:null},{id:"191392",title:"Dr.",name:"Marimuthu",middleName:null,surname:"Govindarajan",slug:"marimuthu-govindarajan",fullName:"Marimuthu Govindarajan",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/191392/images/5828_n.jpg",biography:"Dr. M. Govindarajan completed his BSc degree in Zoology at Government Arts College (Autonomous), Kumbakonam, and MSc, MPhil, and PhD degrees at Annamalai University, Annamalai Nagar, Tamil Nadu, India. He is serving as an assistant professor at the Department of Zoology, Annamalai University. His research interests include isolation, identification, and characterization of biologically active molecules from plants and microbes. He has identified more than 20 pure compounds with high mosquitocidal activity and also conducted high-quality research on photochemistry and nanosynthesis. He has published more than 150 studies in journals with impact factor and 2 books in Lambert Academic Publishing, Germany. He serves as an editorial board member in various national and international scientific journals.",institutionString:null,institution:null},{id:"274660",title:"Dr.",name:"Damodar",middleName:null,surname:"Paudel",slug:"damodar-paudel",fullName:"Damodar Paudel",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/274660/images/8176_n.jpg",biography:"I am DrDamodar Paudel,currently working as consultant Physician in Nepal police Hospital.",institutionString:null,institution:null},{id:"241562",title:"Dr.",name:"Melvin",middleName:null,surname:"Sanicas",slug:"melvin-sanicas",fullName:"Melvin Sanicas",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/241562/images/6699_n.jpg",biography:null,institutionString:null,institution:null},{id:"337446",title:"Dr.",name:"Maria",middleName:null,surname:"Zavala-Colon",slug:"maria-zavala-colon",fullName:"Maria Zavala-Colon",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"University of Puerto Rico, Medical Sciences Campus",country:{name:"United States of America"}}},{id:"338856",title:"Mrs.",name:"Nur Alvira",middleName:null,surname:"Pascawati",slug:"nur-alvira-pascawati",fullName:"Nur Alvira Pascawati",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Universitas Respati Yogyakarta",country:{name:"Indonesia"}}},{id:"441116",title:"Dr.",name:"Jovanka M.",middleName:null,surname:"Voyich",slug:"jovanka-m.-voyich",fullName:"Jovanka M. Voyich",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"Montana State University",country:{name:"United States of America"}}},{id:"330412",title:"Dr.",name:"Muhammad",middleName:null,surname:"Farhab",slug:"muhammad-farhab",fullName:"Muhammad Farhab",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"University of Agriculture Faisalabad",country:{name:"Pakistan"}}},{id:"349495",title:"Dr.",name:"Muhammad",middleName:null,surname:"Ijaz",slug:"muhammad-ijaz",fullName:"Muhammad Ijaz",position:null,profilePictureURL:"//cdnintech.com/web/frontend/www/assets/author.svg",biography:null,institutionString:null,institution:{name:"University of Veterinary and Animal Sciences",country:{name:"Pakistan"}}}]}},subseries:{item:{id:"38",type:"subseries",title:"Pollution",keywords:"Human activity, Pollutants, Reduced risks, Population growth, Waste disposal, Remediation, Clean environment",scope:"
\r\n\tPollution is caused by a wide variety of human activities and occurs in diverse forms, for example biological, chemical, et cetera. In recent years, significant efforts have been made to ensure that the environment is clean, that rigorous rules are implemented, and old laws are updated to reduce the risks towards humans and ecosystems. However, rapid industrialization and the need for more cultivable sources or habitable lands, for an increasing population, as well as fewer alternatives for waste disposal, make the pollution control tasks more challenging. Therefore, this topic will focus on assessing and managing environmental pollution. It will cover various subjects, including risk assessment due to the pollution of ecosystems, transport and fate of pollutants, restoration or remediation of polluted matrices, and efforts towards sustainable solutions to minimize environmental pollution.
",coverUrl:"https://cdn.intechopen.com/series_topics/covers/38.jpg",hasOnlineFirst:!1,hasPublishedBooks:!0,annualVolume:11966,editor:{id:"110740",title:"Dr.",name:"Ismail M.M.",middleName:null,surname:"Rahman",slug:"ismail-m.m.-rahman",fullName:"Ismail M.M. Rahman",profilePictureURL:"https://mts.intechopen.com/storage/users/110740/images/2319_n.jpg",biography:"Ismail Md. Mofizur Rahman (Ismail M. M. Rahman) assumed his current responsibilities as an Associate Professor at the Institute of Environmental Radioactivity, Fukushima University, Japan, in Oct 2015. He also has an honorary appointment to serve as a Collaborative Professor at Kanazawa University, Japan, from Mar 2015 to the present. \nFormerly, Dr. Rahman was a faculty member of the University of Chittagong, Bangladesh, affiliated with the Department of Chemistry (Oct 2002 to Mar 2012) and the Department of Applied Chemistry and Chemical Engineering (Mar 2012 to Sep 2015). Dr. Rahman was also adjunctly attached with Kanazawa University, Japan (Visiting Research Professor, Dec 2014 to Mar 2015; JSPS Postdoctoral Research Fellow, Apr 2012 to Mar 2014), and Tokyo Institute of Technology, Japan (TokyoTech-UNESCO Research Fellow, Oct 2004–Sep 2005). \nHe received his Ph.D. degree in Environmental Analytical Chemistry from Kanazawa University, Japan (2011). He also achieved a Diploma in Environment from the Tokyo Institute of Technology, Japan (2005). Besides, he has an M.Sc. degree in Applied Chemistry and a B.Sc. degree in Chemistry, all from the University of Chittagong, Bangladesh. \nDr. Rahman’s research interest includes the study of the fate and behavior of environmental pollutants in the biosphere; design of low energy and low burden environmental improvement (remediation) technology; implementation of sustainable waste management practices for treatment, handling, reuse, and ultimate residual disposition of solid wastes; nature and type of interactions in organic liquid mixtures for process engineering design applications.",institutionString:null,institution:{name:"Fukushima University",institutionURL:null,country:{name:"Japan"}}},editorTwo:{id:"201020",title:"Dr.",name:"Zinnat Ara",middleName:null,surname:"Begum",slug:"zinnat-ara-begum",fullName:"Zinnat Ara Begum",profilePictureURL:"https://mts.intechopen.com/storage/users/201020/images/system/201020.jpeg",biography:"Zinnat A. Begum received her Ph.D. in Environmental Analytical Chemistry from Kanazawa University in 2012. She achieved her Master of Science (M.Sc.) degree with a major in Applied Chemistry and a Bachelor of Science (B.Sc.) in Chemistry, all from the University of Chittagong, Bangladesh. Her work affiliations include Fukushima University, Japan (Visiting Research Fellow, Institute of Environmental Radioactivity: Mar 2016 to present), Southern University Bangladesh (Assistant Professor, Department of Civil Engineering: Jan 2015 to present), and Kanazawa University, Japan (Postdoctoral Fellow, Institute of Science and Engineering: Oct 2012 to Mar 2014; Research fellow, Venture Business Laboratory, Advanced Science and Social Co-Creation Promotion Organization: Apr 2018 to Mar 2021). The research focus of Dr. Zinnat includes the effect of the relative stability of metal-chelator complexes in the environmental remediation process designs and the development of eco-friendly soil washing techniques using biodegradable chelators.",institutionString:null,institution:{name:"Fukushima University",institutionURL:null,country:{name:"Japan"}}},editorThree:null,series:{id:"25",title:"Environmental Sciences",doi:"10.5772/intechopen.100362",issn:"2754-6713"},editorialBoard:[{id:"252368",title:"Dr.",name:"Meng-Chuan",middleName:null,surname:"Ong",slug:"meng-chuan-ong",fullName:"Meng-Chuan Ong",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRVotQAG/Profile_Picture_2022-05-20T12:04:28.jpg",institutionString:null,institution:{name:"Universiti Malaysia Terengganu",institutionURL:null,country:{name:"Malaysia"}}},{id:"63465",title:"Prof.",name:"Mohamed Nageeb",middleName:null,surname:"Rashed",slug:"mohamed-nageeb-rashed",fullName:"Mohamed Nageeb Rashed",profilePictureURL:"https://mts.intechopen.com/storage/users/63465/images/system/63465.gif",institutionString:null,institution:{name:"Aswan University",institutionURL:null,country:{name:"Egypt"}}},{id:"187907",title:"Dr.",name:"Olga",middleName:null,surname:"Anne",slug:"olga-anne",fullName:"Olga Anne",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bSBE5QAO/Profile_Picture_2022-04-07T09:42:13.png",institutionString:null,institution:{name:"Klaipeda State University of Applied Sciences",institutionURL:null,country:{name:"Lithuania"}}}]},onlineFirstChapters:{paginationCount:10,paginationItems:[{id:"82196",title:"Multi-Features Assisted Age Invariant Face Recognition and Retrieval Using CNN with Scale Invariant Heat Kernel Signature",doi:"10.5772/intechopen.104944",signatures:"Kamarajugadda Kishore Kumar and Movva Pavani",slug:"multi-features-assisted-age-invariant-face-recognition-and-retrieval-using-cnn-with-scale-invariant-",totalDownloads:5,totalCrossrefCites:0,totalDimensionsCites:0,authors:null,book:{title:"Pattern Recognition - New Insights",coverURL:"https://cdn.intechopen.com/books/images_new/11442.jpg",subseries:{id:"26",title:"Machine Learning and Data Mining"}}},{id:"82063",title:"Evaluating Similarities and Differences between Machine Learning and Traditional Statistical Modeling in Healthcare Analytics",doi:"10.5772/intechopen.105116",signatures:"Michele Bennett, Ewa J. 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Thus proteomics, an area of research that detects all protein forms expressed in an organism, including splice isoforms and post-translational modifications, is more suitable than genomics for a comprehensive understanding of the biochemical processes that govern life. The most common proteomics applications are currently in the clinical field for the identification, in a variety of biological matrices, of biomarkers for diagnosis and therapeutic intervention of disorders. From the comparison of proteomic profiles of control and disease or different physiological states, which may emerge, changes in protein expression can provide new insights into the roles played by some proteins in human pathologies. Understanding how proteins function and interact with each other is another goal of proteomics that makes this approach even more intriguing. Specialized technology and expertise are required to assess the proteome of any biological sample. Currently, proteomics relies mainly on mass spectrometry (MS) combined with electrophoretic (1 or 2-DE-MS) and/or chromatographic techniques (LC-MS/MS). MS is an excellent tool that has gained popularity in proteomics because of its ability to gather a complex body of information such as cataloging protein expression, identifying protein modification sites, and defining protein interactions. 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