Stakeholders participating in the Urban solid waste management in the city of Tepic, Nayarit, Mexico.
\r\n\tFourth, the effects of digitalization on economic and sustainable development and the benefits of digitization for public services, including e-governance, e-payments, e-democracy, e-health, e-learning, e-payments, and so on, are also presented.
\r\n\r\n\tAt the fifth stage, we will try to highlight the imperative role of blockchain technology, artificial intelligence, and machine learning in the digitization process.
\r\n\r\n\tLast but not least, the main threats of a digital economy are presented under the form of cybercrime and “surveillance capitalism”, including the impact of financial crimes referring to card frauds, online frauds, digital frauds, digital shadow economy, black market, money laundering, etc.
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Shmat’ko, Viktoria N. Mizernik, Eugene N. Odarenko\nand Viktor T. 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This approach leads to many problems in the urban environment, such as population concentration, shortage of housing, scarcity of resources, reduction of biodiversity, air, soil and water pollution [2].
\nThe final disposal of the waste is a serious issue, since it is the key element to control the environmental contamination of soil and pollution of local water sources. In past and even today many Mexican cities have disposed of their municipal waste in an inappropriate manner, using uncontrolled landfills to bury their garbage, causing a chain of environmental degradation. Solid waste management is defined as the discipline associated with the control of generation, storage, collection, transfer and transport, processing and disposal of solid waste in a way that harmonizes with the best principles of public health, economics, engineering, conservation, esthetics and other environmental and public considerations [3]. Within this scope, all administrative, financial, legal, planning and engineering functions are included.
\nIn the last decades, Municipal Solid Waste (MSW) management systems have a complex and multifactorial behavior, due to large diversity of the materials that compose this waste, causing an environmental cost to cities. The technological, economic and environmental policies alternatives have caused changes in the waste management practice, which further complicates the scenario. Thus, it unleashes a new paradigm in the sustainable development of cities, at the local level but which impacts globally.
\nThe sustainable management of Municipal Solid Waste requires a holistic approach that considers the parties involved, their relationships and different factors of complex decision making, in a sensible and logical way. In this chapter, we introduce an Urban Management Model: Municipal Solid Waste for city sustainability, which outline a multidisciplinary in middle size cities with a total population that goes from 100,000 to 1 million people and, a territory extension that goes from 1 to 5000 m2, Figure 1.
\nLocation of the study site, municipality of Tepic, Nayarit, Mexico.
In addition, it integrates the stakeholders in the individual and group decision making in the management of the MSW, as well as the social, economic, political and environmental aspects; for which it is necessary to establish their relationships and compare them.
\nTherefore, it is necessary to evaluate it through an ex-ante and ex-post multi-criteria analysis, regarding an environmental problem for decision making and to model it adequately, to draft well-structured strategies in the decision-making process for the scenarios future of the Municipal Solid Waste management system.
\nUrban management model of urban solid waste is generated, applied and evaluated, based on a government-society-academy perspective. This model is designed through a social perspective and a technological perspective. The study considers four phases: key social actors, recycling, final disposal, public policies and model evaluation. This model postulates the incorporation of environmental management and sustainability through the link between local government-society and academia that will influence the plants and programs of solid waste (Figure 2).
\nUrban Management Model: municipal solid waste for city sustainability.
The main challenge in solid waste management is to develop models that help decision-making. Also considering cooperative interactions among stakeholders, which may be groups or individuals, that impact or are impacted by the USW system. It requires the participation of many experts and stakeholders for the waste reduction. It is therefore important to establish a link between all groups to produce a holistic approach to solid waste management [4, 5, 6, 7, 8].
\nIn this study the stakeholders were convened to form a team: Government, Society and Academia. Following participatory and educational methodologies such as significant learning, different activities were designed to raise awareness, educate and train participants. In Table 1, participating stakeholders and its function are described.
\nStakeholder | \nSocial actor | \nFunction | \n
---|---|---|
Academia (A) | \nAcademia and researchers | \nManagement Knowledge transfer | \n
Local Government (B) | \nLocal Government of Tepic Department of Public Cleanliness Department of Ecology | \nStrengthen processes Operate plans and programs | \n
Organized groups of Society (C) | \nCitizen Action Committees Environmental activists | \nPromote connection with the community Promote environmental culture among citizens | \n
Stakeholders participating in the Urban solid waste management in the city of Tepic, Nayarit, Mexico.
The process of transformation of the materials obtained from the Municipal solid Waste was carried out in a first stage based on a mechanical treatment that is the grinding. In order to reduce volumes of compaction and market the products as raw materials. The recycling of organic solid waste was carried out through the study and quantification of food material to produce quality compost and its application in the region crops. The recycling of inorganic solid waste such as plastic, metal, paper and cardboard was made through the prototype development based on mechanical treatments. The recycling of electronic waste was carried out as a program to collect electronic equipment called “Recyclatron” in order to promote a culture towards sustainability in the management of electronic waste and to be a reference model for social and environmental responsibility within the community. The operation of the program was based on the logistics of the integrated management of urban solid waste, under the Official Mexican Standard NOM-161-SEMARNAT-2011 [9]. It involves five stages: (i) collection; (ii) characterization; (iii) quantification; (iv) recovery and reuse; (v) marketing and trading. Four editions were held, every 2 years, the program incorporates engineering students from the Autonomous University of Nayarit who supervise the operation and execution of the process, Figure 3.
\nStakeholders municipal solid waste for city sustainability.
The growth of the population in urban areas and the development of cities should support environmental sustainability in Municipal Solid Waste management systems. The final disposal of this waste is a serious issue, since it is the key element for the control of environmental local soils contamination and water sources pollution. Therefore, the need to designate suitable sites for their final disposal is justified. Potential zones were identified for the location of a solid waste landfill in the municipality of Tepic. A spatial analysis of the municipality was carried out, contrasting four criteria indicated in the Official Mexican Standard NOM-083-SEMARNAT-2003 [10], and two other natural features, slope and coverage, as well as land use. It was possible to identify a 5.4% surface of the municipality of Tepic (about 9090.8 ha) with appropriate land features for the location of a sanitary landfill; the remaining 94.6% has at least one characteristic that limits or restricts it for this purpose, Figure 4.
\nLand potential for the location of landfill, municipality of Tepic, Nayarit, Mexico.
Propose public policies with regulations towards actions of selective separation, incorporation of the informal cleaning sector to the formal one, through the system of consultation, studies and discussions with the community. The proposal considered a regulatory framework for actions to separate and treat solid waste in cities. The environmental legislation of different order was analyzed in the three levels of competence: federal, state and municipal. The following guidelines are proposed for its execution. Chapter one—General provisions—Establish the public interest and the regulations of the subject.—Establish what is intended to regulate—Conceptual framework of terms—Municipality competence—Cleaning service—Environmental education. Chapter two—Management—Authorities—Powers of the authorities-Inspection and surveillance. Chapter three—COMPREHENSIVE waste management—Solid waste and special management—Hazardous waste Chapter four—organization Service delivery—Sweeping system—Collection system—Transportation and transfer system—Treatment and final disposal. This comprehensive management policy of urban solid waste presents the multilateral problem of waste management with a multi and interdisciplinary approach in order to solve it, including the legal, institutional, technical, economic, land-use planning and awareness, environmental education and participation of the citizenship. It is proposed for its fulfillment to present it before the State of Nayarit Congress for its study, revision or approval.
\nThe proposed model was based on the stakeholders: Government-Society and Academia. Through a social and technological perspective. Taking the city of Tepic as study area. The methodology contribution used for its evaluation was the multi-criteria and/or multi- objective analysis, based on a set of techniques used in the multidimensional decision making to assess a group of alternatives which covers and satisfy one or several objectives, in terms of multiple criteria. These studies facilitate the balanced analysis of all stages of PLANNING problems, because several intangible effects, such as social effects and environmental repercussions can be fully considered [11]. In this study it was processed through the Analytical Hierarchy Process (AHP) to determine the contribution based on set of criteria in the project development. By the Analytical Hierarchy Process, the AHP, it is possible to organize the problem information, decompose it and analyze it by parts, visualize the variations presented when there are changes in each level of hierarchy and synthesize. The first step is to identify all the elements that intervene in the decision-making process and the levels at which these elements can be grouped in a hierarchical way. The criteria to assess: society, treatments, final disposition and public policies and generation and evaluation of the model, Figure 5.
\nEvaluation urban management model: municipal solid waste for city sustainability.
The Urban Management Model: Municipal Urban solid waste for city sustainability establishes the indispensable elements to solve the problem of high production in cities. With a multidisciplinary vision, different disciplines are incorporated from engineering, social, marketing, local economic development, sustainability, and management of organizations. In this way, the development and dissemination of technological innovations are key factors that will determine the future of sustainability in a highly populated planet with an environmentally degraded urbanized surface.
\nThe model allowed to achieve the transfer of knowledge, in all intervention spaces. At the levels of stockholding and in the technical processes: Academy-Government-Society and the incorporation of Companies, an adequate network of relationships were formed for the generation and transfer of knowledge. In addition, a strategic alliance was achieved. They were established the basis towards the study of biotechnology, the technological development, marketing of materials for recycling, space studies for final disposal sites, organizational studies in recycling companies incorporating the vision of environmental management systems. This range of possibilities raises the scope of the study and allows several paths in the investigation of applied science and the link with the business sector.
\nThis research work has been supported by CONACYT through the project 247699 CONACYT-PDCPN-2014.
\nThe authors declared no potential conflicts of interest with respect to the research, authorship, and/or publication of this chapter.
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\n\nBook Chapters published in edited volumes are distributed under the Creative Commons Attribution 3.0 Unported License (CC BY 3.0). IntechOpen maintains a very flexible Copyright Policy that ensures that there is no copyright transfer to the publisher. Therefore, Authors retain exclusive copyright to their work. All Monographs are distributed under the Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) and journal articles are distributed under a Creative Commons 4.0 International Licence.
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Abu-Eishah"}]},{id:"39998",doi:"10.5772/52595",title:"Tribological Properties of Ionic Liquids",slug:"tribological-properties-of-ionic-liquids",totalDownloads:4030,totalCrossrefCites:13,totalDimensionsCites:31,abstract:null,book:{id:"3178",slug:"ionic-liquids-new-aspects-for-the-future",title:"Ionic Liquids",fullTitle:"Ionic Liquids - New Aspects for the Future"},signatures:"Yuriko Kondo, Tahahiro Koyama and Shinya Sasaki",authors:[{id:"153602",title:"Prof.",name:"Shinya",middleName:null,surname:"Sasaki",slug:"shinya-sasaki",fullName:"Shinya Sasaki"},{id:"167078",title:"BSc.",name:"Yuriko",middleName:null,surname:"Kondo",slug:"yuriko-kondo",fullName:"Yuriko Kondo"},{id:"167079",title:"BSc.",name:"Takahiro",middleName:null,surname:"Koyama",slug:"takahiro-koyama",fullName:"Takahiro Koyama"}]}],mostDownloadedChaptersLast30Days:[{id:"20532",title:"1,2,3-Triazolium Salts as a Versatile New Class of Ionic Liquids",slug:"1-2-3-triazolium-salts-as-a-versatile-new-class-of-ionic-liquids",totalDownloads:6031,totalCrossrefCites:6,totalDimensionsCites:12,abstract:null,book:{id:"327",slug:"ionic-liquids-classes-and-properties",title:"Ionic Liquids",fullTitle:"Ionic Liquids - Classes and Properties"},signatures:"Zekarias Yacob and Jürgen Liebscher",authors:[{id:"52686",title:"Prof.",name:"Jürgen",middleName:null,surname:"Liebscher",slug:"jurgen-liebscher",fullName:"Jürgen Liebscher"},{id:"56807",title:"Prof.",name:"Zekarias Yacob",middleName:null,surname:"Fundusa",slug:"zekarias-yacob-fundusa",fullName:"Zekarias Yacob Fundusa"}]},{id:"72530",title:"Application of Vortex Control Principle at Pump Intake",slug:"application-of-vortex-control-principle-at-pump-intake",totalDownloads:1008,totalCrossrefCites:0,totalDimensionsCites:0,abstract:"Vortex flow in a pump intake could affect a pump operation significantly if not treated appropriately. Many researches have been conducted to determine the best control method for vortex flow in pump sumps so that the pump lifespan can be maximized. In this study, a vortex control principle designed to minimize the impact of submerged vortex flow in pump sump on major pump components is presented. This principle employs a device called the plate type floor splitter which serves the function of eliminating vortices formed on the sump floor and reduces the intensity of swirling motion in the intake flow. A pump sump model was built to carry out the study by installing a floor splitter plate sample under the pump suction inlet and the corresponding parameters used to quantify the swirl intensity known as the swirl angle was measured. Procedures for the measurement were conducted based on ANSI/HI 9.8-2018 standard. A numerical simulation was performed to study the flow in a full-scale pump sump. The results showed that the installation of floor splitter plate can eliminate vortices efficiently and reduce swirl angle significantly. However, optimization of floor splitter design is needed to achieve a reduction effect that can reduce swirl angles to an acceptable value of lower than 5° according to ANSI/HI 9.8-2018 standard.",book:{id:"10080",slug:"vortex-dynamics-theories-and-applications",title:"Vortex Dynamics Theories and Applications",fullTitle:"Vortex Dynamics Theories and Applications"},signatures:"Zambri Harun, Tajul Ariffin Norizan and Wan Hanna Melini Wan Mohtar",authors:[{id:"243152",title:"Dr.",name:"Zambri",middleName:null,surname:"Harun",slug:"zambri-harun",fullName:"Zambri Harun"},{id:"313310",title:"Mr.",name:"Tajul Ariffin",middleName:null,surname:"Norizan",slug:"tajul-ariffin-norizan",fullName:"Tajul Ariffin Norizan"},{id:"317421",title:"Dr.",name:"Wan Hanna Melini",middleName:null,surname:"Wan Mohtar",slug:"wan-hanna-melini-wan-mohtar",fullName:"Wan Hanna Melini Wan Mohtar"}]},{id:"75307",title:"Prototyping and Production of Polymeric Microfluidic Chip",slug:"prototyping-and-production-of-polymeric-microfluidic-chip",totalDownloads:584,totalCrossrefCites:2,totalDimensionsCites:3,abstract:"Microfluidic chips have found many advanced applications in the areas of life science, analytical chemistry, agro-food analysis, and environmental detection. This chapter focuses on investigating the commonly used manufacturing technologies and process chain for the prototyping and mass production of microfluidic chips. The rapid prototyping technologies comprising of PDMS casting, micro machining, and 3D-printing are firstly detailed with some important research findings. Scaling up the production process chain for microfluidic chips are discussed and summarized with the perspectives of tooling technology, replication, and bonding technologies, where the primary working mechanism, technical advantages and limitations of each process method are presented. Finally, conclusions and future perspectives are given. Overall, this chapter demonstrates how to select the processing materials and methods to meet practical requirements for microfluidic chip batch production. It can provide significant guidance for end-user of microfluidic chip applications.",book:{id:"10374",slug:"advances-in-microfluidics-and-nanofluids",title:"Advances in Microfluidics and Nanofluids",fullTitle:"Advances in Microfluidics and Nanofluids"},signatures:"Honggang Zhang, Haoyang Zhang, Tianyu Guan, Xiangyu Wang and Nan Zhang",authors:[{id:"333582",title:"Dr.",name:"Nan",middleName:null,surname:"Zhang",slug:"nan-zhang",fullName:"Nan Zhang"},{id:"346021",title:"Prof.",name:"Honggang",middleName:null,surname:"Zhang",slug:"honggang-zhang",fullName:"Honggang Zhang"},{id:"346753",title:"Mr.",name:"Haoyang",middleName:null,surname:"Zhang",slug:"haoyang-zhang",fullName:"Haoyang Zhang"},{id:"346755",title:"Mr.",name:"Tianyu",middleName:null,surname:"Guan",slug:"tianyu-guan",fullName:"Tianyu Guan"},{id:"346757",title:"Mr.",name:"Xiangyu",middleName:null,surname:"Wang",slug:"xiangyu-wang",fullName:"Xiangyu Wang"}]},{id:"20216",title:"Ionic Liquids in Separation Techniques",slug:"ionic-liquids-in-separation-techniques",totalDownloads:8522,totalCrossrefCites:4,totalDimensionsCites:7,abstract:null,book:{id:"1300",slug:"applications-of-ionic-liquids-in-science-and-technology",title:"Applications of Ionic Liquids in Science and Technology",fullTitle:"Applications of Ionic Liquids in Science and Technology"},signatures:"Jolanta Flieger and Anna Czajkowska-Żelazko",authors:[{id:"20797",title:"Dr.",name:"Jolanta",middleName:null,surname:"Flieger",slug:"jolanta-flieger",fullName:"Jolanta Flieger"},{id:"136020",title:"Prof.",name:"Czajkowska",middleName:null,surname:"Żelazko",slug:"czajkowska-zelazko",fullName:"Czajkowska Żelazko"}]},{id:"68881",title:"Nanofluid: New Fluids by Nanotechnology",slug:"nanofluid-new-fluids-by-nanotechnology",totalDownloads:1422,totalCrossrefCites:0,totalDimensionsCites:1,abstract:"Recently, nanotechnology has played a major part in multifields of heat transfer processes and developed a remarkable progress in the energy applications. One of the most plausible applications of nanotechnology is to produce nanoparticles of high thermal conductivity and mixing with the base fluids that transfer energy forming what is called nanofluids. Adding of nanoparticles to the base fluid shows a remarkable enhancement of the thermal properties of the base properties. Nanotechnology has greatly improved the science of heat transfer by improving the properties of the energy-transmitting fluids. A high heat transfer could be obtained through the creation of innovative fluid (nanofluids). This also reduces the size of heat transfer equipment and saves energy.",book:{id:"8887",slug:"thermophysical-properties-of-complex-materials",title:"Thermophysical Properties of Complex Materials",fullTitle:"Thermophysical Properties of Complex Materials"},signatures:"Mahmoud Salem Ahmed",authors:null}],onlineFirstChaptersFilter:{topicId:"157",limit:6,offset:0},onlineFirstChaptersCollection:[],onlineFirstChaptersTotal:0},preDownload:{success:null,errors:{}},subscriptionForm:{success:null,errors:{}},aboutIntechopen:{},privacyPolicy:{},peerReviewing:{},howOpenAccessPublishingWithIntechopenWorks:{},sponsorshipBooks:{sponsorshipBooks:[],offset:0,limit:8,total:null},allSeries:{pteSeriesList:[],lsSeriesList:[],hsSeriesList:[],sshSeriesList:[],testimonialsList:[]},series:{item:{id:"11",title:"Biochemistry",doi:"10.5772/intechopen.72877",issn:"2632-0983",scope:"Biochemistry, the study of chemical transformations occurring within living organisms, impacts all areas of life sciences, from molecular crystallography and genetics to ecology, medicine, and population biology. Biochemistry examines macromolecules - proteins, nucleic acids, carbohydrates, and lipids – and their building blocks, structures, functions, and interactions. Much of biochemistry is devoted to enzymes, proteins that catalyze chemical reactions, enzyme structures, mechanisms of action and their roles within cells. Biochemistry also studies small signaling molecules, coenzymes, inhibitors, vitamins, and hormones, which play roles in life processes. Biochemical experimentation, besides coopting classical chemistry methods, e.g., chromatography, adopted new techniques, e.g., X-ray diffraction, electron microscopy, NMR, radioisotopes, and developed sophisticated microbial genetic tools, e.g., auxotroph mutants and their revertants, fermentation, etc. More recently, biochemistry embraced the ‘big data’ omics systems. Initial biochemical studies have been exclusively analytic: dissecting, purifying, and examining individual components of a biological system; in the apt words of Efraim Racker (1913 –1991), “Don’t waste clean thinking on dirty enzymes.” Today, however, biochemistry is becoming more agglomerative and comprehensive, setting out to integrate and describe entirely particular biological systems. The ‘big data’ metabolomics can define the complement of small molecules, e.g., in a soil or biofilm sample; proteomics can distinguish all the comprising proteins, e.g., serum; metagenomics can identify all the genes in a complex environment, e.g., the bovine rumen. This Biochemistry Series will address the current research on biomolecules and the emerging trends with great promise.",coverUrl:"https://cdn.intechopen.com/series/covers/11.jpg",latestPublicationDate:"June 29th, 2022",hasOnlineFirst:!0,numberOfPublishedBooks:32,editor:{id:"31610",title:"Dr.",name:"Miroslav",middleName:null,surname:"Blumenberg",slug:"miroslav-blumenberg",fullName:"Miroslav Blumenberg",profilePictureURL:"https://mts.intechopen.com/storage/users/31610/images/system/31610.jpg",biography:"Miroslav Blumenberg, Ph.D., was born in Subotica and received his BSc in Belgrade, Yugoslavia. He completed his Ph.D. at MIT in Organic Chemistry; he followed up his Ph.D. with two postdoctoral study periods at Stanford University. Since 1983, he has been a faculty member of the RO Perelman Department of Dermatology, NYU School of Medicine, where he is codirector of a training grant in cutaneous biology. Dr. Blumenberg’s research is focused on the epidermis, expression of keratin genes, transcription profiling, keratinocyte differentiation, inflammatory diseases and cancers, and most recently the effects of the microbiome on the skin. He has published more than 100 peer-reviewed research articles and graduated numerous Ph.D. and postdoctoral students.",institutionString:null,institution:{name:"New York University Langone Medical Center",institutionURL:null,country:{name:"United States of America"}}},editorTwo:null,editorThree:null},subseries:{paginationCount:4,paginationItems:[{id:"38",title:"Pollution",coverUrl:"https://cdn.intechopen.com/series_topics/covers/38.jpg",isOpenForSubmission:!0,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. 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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. 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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},{id:"39",title:"Environmental Resilience and Management",coverUrl:"https://cdn.intechopen.com/series_topics/covers/39.jpg",isOpenForSubmission:!0,editor:{id:"137040",title:"Prof.",name:"Jose",middleName:null,surname:"Navarro-Pedreño",slug:"jose-navarro-pedreno",fullName:"Jose Navarro-Pedreño",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRAXrQAO/Profile_Picture_2022-03-09T15:50:19.jpg",biography:"Full professor at University Miguel Hernández of Elche, Spain, previously working at the University of Alicante, Autonomous University of Madrid and Polytechnic University of Valencia. Graduate in Sciences (Chemist), graduate in Geography and History (Geography), master in Water Management, Treatment, master in Fertilizers and Environment and master in Environmental Management; Ph.D. in Environmental Sciences. His research is focused on soil-water and waste-environment relations, mainly on soil-water and soil-waste interactions under different management and waste reuse. His work is reflected in more than 230 communications presented in national and international conferences and congresses, 29 invited lectures from universities, associations and government agencies. Prof. Navarro-Pedreño is also a director of the Ph.D. Program Environment and Sustainability (2012-present) and a member of several societies among which are the Spanish Society of Soil Science, International Union of Soil Sciences, European Society for Soil Conservation, DessertNet and the Spanish Royal Society of Chemistry.",institutionString:"Miguel Hernández University of Elche, Spain",institution:null},editorTwo:null,editorThree:null},{id:"40",title:"Ecosystems and Biodiversity",coverUrl:"https://cdn.intechopen.com/series_topics/covers/40.jpg",isOpenForSubmission:!0,editor:{id:"209149",title:"Prof.",name:"Salustiano",middleName:null,surname:"Mato",slug:"salustiano-mato",fullName:"Salustiano Mato",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0030O00002bRLREQA4/Profile_Picture_2022-03-31T10:23:50.png",biography:"Salustiano Mato de la Iglesia (Santiago de Compostela, 1960) is a doctor in biology from the University of Santiago and a Professor of zoology at the Department of Ecology and Animal Biology at the University of Vigo. He has developed his research activity in the fields of fauna and soil ecology, and in the treatment of organic waste, having been the founder and principal investigator of the Environmental Biotechnology Group of the University of Vigo.\r\nHis research activity in the field of Environmental Biotechnology has been focused on the development of novel organic waste treatment systems through composting. 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She has focused her research activity on the taxonomy, fauna and ecology of aquatic beetles, in addition to other lines of research such as the conservation of biodiversity in freshwater ecosystems; conservation of protected areas (Red Natura 2000) and assessment of the effectiveness of wetlands as priority areas for the conservation of aquatic invertebrates; studies of water quality in freshwater ecosystems through biological indicators and physicochemical parameters; surveillance and research of vector arthropods and invasive alien species.",institutionString:null,institution:{name:"University of Vigo",institutionURL:null,country:{name:"Spain"}}},editorThree:{id:"464288",title:"Dr.",name:"Francisco",middleName:null,surname:"Ramil",slug:"francisco-ramil",fullName:"Francisco Ramil",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y00003RI7lHQAT/Profile_Picture_2022-03-31T10:15:35.png",biography:"Fran Ramil Blanco (Porto de Espasante, A Coruña, 1960), is a doctor in biology from the University of Santiago de Compostela and a Professor of Zoology at the Department of Ecology and Animal Biology at the University of Vigo. His research activity is linked to the taxonomy, fauna and ecology of marine benthic invertebrates and especially the Cnidarian group. Since 2004, he has been part of the EcoAfrik project, aimed at the study, protection and conservation of biodiversity and benthic habitats in West Africa. He also participated in the study of vulnerable marine ecosystems associated with seamounts in the South Atlantic and is involved in training young African researchers in the field of marine research.",institutionString:null,institution:{name:"University of Vigo",institutionURL:null,country:{name:"Spain"}}}},{id:"41",title:"Water Science",coverUrl:"https://cdn.intechopen.com/series_topics/covers/41.jpg",isOpenForSubmission:!0,editor:{id:"349630",title:"Dr.",name:"Yizi",middleName:null,surname:"Shang",slug:"yizi-shang",fullName:"Yizi Shang",profilePictureURL:"https://mts.intechopen.com/storage/users/349630/images/system/349630.jpg",biography:"Prof. Dr. Yizi Shang is a pioneering researcher in hydrology and water resources who has devoted his research career to promoting the conservation and protection of water resources for sustainable development. He is presently associate editor of Water International (official journal of the International Water Resources Association). He was also invited to serve as an associate editor for special issues of the Journal of the American Water Resources Association. He has served as an editorial member for international journals such as Hydrology, Journal of Ecology & Natural Resources, and Hydro Science & Marine Engineering, among others. He has chaired or acted as a technical committee member for twenty-five international forums (conferences). Dr. Shang graduated from Tsinghua University, China, in 2010 with a Ph.D. in Engineering. Prior to that, he worked as a research fellow at Harvard University from 2008 to 2009. Dr. Shang serves as a senior research engineer at the China Institute of Water Resources and Hydropower Research (IWHR) and was awarded as a distinguished researcher at National Taiwan University in 2017.",institutionString:"China Institute of Water Resources and Hydropower Research",institution:{name:"China Institute of Water Resources and Hydropower Research",institutionURL:null,country:{name:"China"}}},editorTwo:null,editorThree:null}]},overviewPageOFChapters:{paginationCount:3,paginationItems:[{id:"82362",title:"Studies on the Short-Term Effects of the Cease of Pesticides Use on Vineyard Microbiome",doi:"10.5772/intechopen.105706",signatures:"Simona Ghiță, Mihaela Hnatiuc, Aurora Ranca, Victoria Artem and Mădălina-Andreea Ciocan",slug:"studies-on-the-short-term-effects-of-the-cease-of-pesticides-use-on-vineyard-microbiome",totalDownloads:2,totalCrossrefCites:0,totalDimensionsCites:0,authors:null,book:{title:"Vegetation Dynamics, Changing Ecosystems and Human Responsibility",coverURL:"https://cdn.intechopen.com/books/images_new/11663.jpg",subseries:{id:"40",title:"Ecosystems and Biodiversity"}}},{id:"82297",title:"The Climate Change-Agriculture Nexus in Drylands of Ethiopia",doi:"10.5772/intechopen.103905",signatures:"Zenebe Mekonnen",slug:"the-climate-change-agriculture-nexus-in-drylands-of-ethiopia",totalDownloads:19,totalCrossrefCites:0,totalDimensionsCites:0,authors:null,book:{title:"Vegetation Dynamics, Changing Ecosystems and Human Responsibility",coverURL:"https://cdn.intechopen.com/books/images_new/11663.jpg",subseries:{id:"40",title:"Ecosystems and Biodiversity"}}},{id:"81999",title:"Climate Change, Rural Livelihoods, and Human Well-Being: Experiences from Kenya",doi:"10.5772/intechopen.104965",signatures:"André J. Pelser and Rujeko Samanthia Chimukuche",slug:"climate-change-rural-livelihoods-and-human-well-being-experiences-from-kenya",totalDownloads:19,totalCrossrefCites:0,totalDimensionsCites:0,authors:null,book:{title:"Vegetation Dynamics, Changing Ecosystems and Human Responsibility",coverURL:"https://cdn.intechopen.com/books/images_new/11663.jpg",subseries:{id:"40",title:"Ecosystems and Biodiversity"}}}]},overviewPagePublishedBooks:{paginationCount:1,paginationItems:[{type:"book",id:"10843",title:"Persistent Organic Pollutants (POPs)",subtitle:"Monitoring, Impact and Treatment",coverURL:"https://cdn.intechopen.com/books/images_new/10843.jpg",slug:"persistent-organic-pollutants-pops-monitoring-impact-and-treatment",publishedDate:"April 13th 2022",editedByType:"Edited by",bookSignature:"Mohamed Nageeb Rashed",hash:"f5b1589f0a990b6114fef2dadc735dd9",volumeInSeries:1,fullTitle:"Persistent Organic Pollutants (POPs) - Monitoring, Impact and Treatment",editors:[{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",biography:"Prof. Mohamed Nageeb Rashed is Professor of Analytical and Environmental Chemistry and former vice-dean for environmental affairs, Faculty of Science, Aswan University, Egypt. He received his Ph.D. in Environmental Analytical Chemistry from Assiut University, Egypt, in 1989. His research interest is in analytical and environmental chemistry with special emphasis on: (1) monitoring and assessing biological trace elements and toxic metals in human blood, urine, water, crops, vegetables, and medicinal plants; (2) relationships between environmental heavy metals and human diseases; (3) uses of biological indicators for monitoring water pollution; (4) environmental chemistry of lakes, rivers, and well water; (5) water and wastewater treatment by adsorption and photocatalysis techniques; (6) soil and water pollution monitoring, control, and treatment; and (7) advanced oxidation treatment. Prof. Rashed has supervised several MSc and Ph.D. theses in the field of analytical and environmental chemistry. He served as an examiner for several Ph.D. theses in analytical chemistry in India, Kazakhstan, and Botswana. He has published about ninety scientific papers in peer-reviewed international journals and several papers in national and international conferences. He participated as an invited speaker at thirty international conferences. Prof. Rashed is the editor-in-chief and an editorial board member for several international journals in the fields of chemistry and environment. He is a member of several national and international societies. He received the Egyptian State Award for Environmental Research in 2001 and the Aswan University Merit Award for Basic Science in 2020. 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