World panorama of dairy sheep and goats.
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More than half of the publishers listed alongside IntechOpen (18 out of 30) are Social Science and Humanities publishers. IntechOpen is an exception to this as a leader in not only Open Access content but Open Access content across all scientific disciplines, including Physical Sciences, Engineering and Technology, Health Sciences, Life Science, and Social Sciences and Humanities.
\\n\\nOur breakdown of titles published demonstrates this with 47% PET, 31% HS, 18% LS, and 4% SSH books published.
\\n\\n“Even though ItechOpen has shown the potential of sci-tech books using an OA approach,” other publishers “have shown little interest in OA books.”
\\n\\nAdditionally, each book published by IntechOpen contains original content and research findings.
\\n\\nWe are honored to be among such prestigious publishers and we hope to continue to spearhead that growth in our quest to promote Open Access as a true pioneer in OA book publishing.
\\n\\n\\n\\n
\\n"}]',published:!0,mainMedia:{caption:"IntechOpen Maintains",originalUrl:"/media/original/113"}},components:[{type:"htmlEditorComponent",content:'
Simba Information has released its Open Access Book Publishing 2020 - 2024 report and has again identified IntechOpen as the world’s largest Open Access book publisher by title count.
\n\nSimba Information is a leading provider for market intelligence and forecasts in the media and publishing industry. The report, published every year, provides an overview and financial outlook for the global professional e-book publishing market.
\n\nIntechOpen, De Gruyter, and Frontiers are the largest OA book publishers by title count, with IntechOpen coming in at first place with 5,101 OA books published, a good 1,782 titles ahead of the nearest competitor.
\n\nSince the first Open Access Book Publishing report published in 2016, IntechOpen has held the top stop each year.
\n\n\n\nMore than half of the publishers listed alongside IntechOpen (18 out of 30) are Social Science and Humanities publishers. IntechOpen is an exception to this as a leader in not only Open Access content but Open Access content across all scientific disciplines, including Physical Sciences, Engineering and Technology, Health Sciences, Life Science, and Social Sciences and Humanities.
\n\nOur breakdown of titles published demonstrates this with 47% PET, 31% HS, 18% LS, and 4% SSH books published.
\n\n“Even though ItechOpen has shown the potential of sci-tech books using an OA approach,” other publishers “have shown little interest in OA books.”
\n\nAdditionally, each book published by IntechOpen contains original content and research findings.
\n\nWe are honored to be among such prestigious publishers and we hope to continue to spearhead that growth in our quest to promote Open Access as a true pioneer in OA book publishing.
\n\n\n\n
\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:"5157",leadTitle:null,fullTitle:"Developments in Combustion Technology",title:"Developments in Combustion Technology",subtitle:null,reviewType:"peer-reviewed",abstract:"Over the past few decades, exciting developments have taken place in the field of combustion technology. The present edited volume intends to cover recent developments and provide a broad perspective of the key challenges that characterize the field. The target audience for this book includes engineers involved in combustion system design, operational planning and maintenance. Manufacturers and combustion technology researchers will also benefit from the timely and accurate information provided in this work.\nThe volume is organized into five main sections comprising 15 chapters overall: \n\t-\tCoal and Biofuel Combustion\n\t-\tWaste Combustion\n\t-\tCombustion and Biofuels in Reciprocating Engines\n\t-\tChemical Looping and Catalysis\n\t-\tFundamental and Emerging Topics in Combustion Technology",isbn:"978-953-51-2669-0",printIsbn:"978-953-51-2668-3",pdfIsbn:"978-953-51-5781-6",doi:"10.5772/61418",price:139,priceEur:155,priceUsd:179,slug:"developments-in-combustion-technology",numberOfPages:430,isOpenForSubmission:!1,isInWos:null,isInBkci:!1,hash:"c9a68f8747be72fd849841bd936e9776",bookSignature:"Konstantinos G. Kyprianidis and Jan Skvaril",publishedDate:"October 5th 2016",coverURL:"https://cdn.intechopen.com/books/images_new/5157.jpg",numberOfDownloads:30236,numberOfWosCitations:52,numberOfCrossrefCitations:36,numberOfCrossrefCitationsByBook:5,numberOfDimensionsCitations:82,numberOfDimensionsCitationsByBook:6,hasAltmetrics:1,numberOfTotalCitations:170,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"October 1st 2015",dateEndSecondStepPublish:"October 22nd 2015",dateEndThirdStepPublish:"January 26th 2016",dateEndFourthStepPublish:"April 25th 2016",dateEndFifthStepPublish:"October 1st 2016",currentStepOfPublishingProcess:5,indexedIn:"1,2,3,4,5,6,7",editedByType:"Edited by",kuFlag:!1,featuredMarkup:null,editors:[{id:"35868",title:"Prof.",name:"Konstantinos",middleName:"G.",surname:"Kyprianidis",slug:"konstantinos-kyprianidis",fullName:"Konstantinos Kyprianidis",profilePictureURL:"https://mts.intechopen.com/storage/users/35868/images/system/35868.jpg",biography:"Prof. Konstantinos G. Kyprianidis is a Full Professor in Energy Engineering within the Future Energy Center at Mälardalen University in Sweden. He leads the SOFIA research group (Simulation and Optimization for Future Industrial Applications) and is the Head of Research Education for Energy & Environmental Engineering. He has been the Principal Investigator of a large number of national and international research projects related to automation in the energy and process industry. Among others, he has been the Chief Engineer for the 5.75mEuro project FUDIPO funded by the European Commission. Prior to coming to MDH, he worked for Rolls-Royce plc in the United Kingdom. He has co-authored over 140 peer-reviewed publications and currently supervises 15 doctoral candidates and is the Chair of the ASME/IGTI Aircraft Engine Committee.",institutionString:"Mälardalen University",position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"2",totalChapterViews:"0",totalEditedBooks:"3",institution:{name:"Mälardalen University",institutionURL:null,country:{name:"Sweden"}}}],equalEditorOne:null,equalEditorTwo:null,equalEditorThree:null,coeditorOne:{id:"192175",title:"Dr.",name:"Jan",middleName:null,surname:"Skvaril",slug:"jan-skvaril",fullName:"Jan Skvaril",profilePictureURL:"https://mts.intechopen.com/storage/users/192175/images/4970_n.jpg",biography:"Jan Skvaril an assistant professor in the Future Energy Center at Mälardalen University, Sweden. He holds Ph.D. degree in Energy and Environmental Engineering from the Mälardalen University and M.Sc. (Ing.) degree in Power Engineering and M.Sc. (Ing.) degree in Company Management and Economics, both from the Brno University of Technology in Czech Republic. His research is directed mainly on applied spectroscopy and research and development of optical sensors for characterization of solid and liquid materials, machine vision, real-time process monitoring, diagnostics, optimization and implementation of model predictive control concepts in large industrial applications. His research focus also includes combustion in large-scale biomass-fired steam boilers, particularly experimental techniques related to temperature and combustion gas distribution, experimental design and performance, multivariate data analysis, machine learning and artificial intelligence for chemometrics. He has authored several scientific papers on these topics, has presented at international conferences, and also lectures on Combustion and Flue Gas Cleaning Technology at the Mälardalen University.",institutionString:null,position:null,outsideEditionCount:0,totalCites:0,totalAuthoredChapters:"0",totalChapterViews:"0",totalEditedBooks:"0",institution:{name:"Mälardalen University",institutionURL:null,country:{name:"Sweden"}}},coeditorTwo:null,coeditorThree:null,coeditorFour:null,coeditorFive:null,topics:[{id:"1347",title:"Thermal Engineering",slug:"technology-chemical-engineering-thermal-engineering"}],chapters:[{id:"51159",title:"Combustion of Biomass Fuel and Residues: Emissions Production Perspective",doi:"10.5772/63793",slug:"combustion-of-biomass-fuel-and-residues-emissions-production-perspective",totalDownloads:2343,totalCrossrefCites:7,totalDimensionsCites:12,hasAltmetrics:0,abstract:"This article provides possibilities for minimising the emissions from eight types of biomass combustion boilers given by virtue of continuous emission measurement. The measurements were carried out on various types of one‐ or two‐stage combustion devices. In all investigated modes of combustor operation, the concentration of nitrogen oxides in the whole cycle of fuel combustion was without marked deviations and far lower than the emission limit of 650 mg/mn3. Concentrations of carbon monoxide (CO) and total organic carbon (TOC) are extremely variable at some operating schedules of combustion boilers. The variability of these concentrations indicates that there are unstable aerodynamic conditions in the combustion device. The causes of this aerodynamic instability have been studied. The mode with stable aerodynamic conditions, for which emission concentrations of CO and TOC are relatively stable, has been determined.",signatures:"Emília Hroncová, Juraj Ladomerský, Ján Valíček and Ladislav\nDzurenda",downloadPdfUrl:"/chapter/pdf-download/51159",previewPdfUrl:"/chapter/pdf-preview/51159",authors:[{id:"179910",title:"Associate Prof.",name:"Emilia",surname:"Hroncova",slug:"emilia-hroncova",fullName:"Emilia Hroncova"},{id:"179964",title:"Prof.",name:"Juraj",surname:"Ladomerský",slug:"juraj-ladomersky",fullName:"Juraj Ladomerský"},{id:"184901",title:"Prof.",name:"Ján",surname:"Valíček",slug:"jan-valicek",fullName:"Ján Valíček"},{id:"184902",title:"Prof.",name:"Ladislav",surname:"Dzuranda",slug:"ladislav-dzuranda",fullName:"Ladislav Dzuranda"}],corrections:null},{id:"51957",title:"A Combustion Process Optimization and Numerical Analysis for the Low Emission Operation of Pulverized Coal-Fired Boiler",doi:"10.5772/64442",slug:"a-combustion-process-optimization-and-numerical-analysis-for-the-low-emission-operation-of-pulverize",totalDownloads:2493,totalCrossrefCites:6,totalDimensionsCites:11,hasAltmetrics:0,abstract:"The paper presents experimental and numerical investigation of pulverized coal combustion process analysis and optimization. The research was conducted on the front-fired pulverized coal boiler with dedicated low-NOx furnace installation. In order to find optimal boiler operating conditions the acoustic gas temperature measurement system and mass flow rate of pulverized coal measurement system was applied. The uniform temperature distribution as a result of uniform coal and air flow provides the optimal combustion process with low level of NOx emission and total organic carbon content in ash. Experimental results confirm that the monitoring and control of fuel and air flow distribution allows to optimize combustion process by increasing thermal efficiency of the boiler. In the numerical part of investigation, the complex CFD model of pulverized coal boiler was made. The calculations of turbulent, reactive, and thermal flow processes were performed at different boiler operating conditions retrieved from power plant on-line monitoring system. The results of numerical simulations enable to identify the optimal boiler operating conditions.",signatures:"Paweł Madejski, Tomasz Janda, Norbert Modliński and Daniel\nNabagło",downloadPdfUrl:"/chapter/pdf-download/51957",previewPdfUrl:"/chapter/pdf-preview/51957",authors:[{id:"179645",title:"Dr.",name:"Paweł",surname:"Madejski",slug:"pawel-madejski",fullName:"Paweł Madejski"},{id:"179940",title:"Dr.",name:"Tomasz",surname:"Janda",slug:"tomasz-janda",fullName:"Tomasz Janda"},{id:"179941",title:"Dr.",name:"Norbert",surname:"Modliński",slug:"norbert-modlinski",fullName:"Norbert Modliński"},{id:"179942",title:"MSc.",name:"Daniel",surname:"Nabagło",slug:"daniel-nabaglo",fullName:"Daniel Nabagło"}],corrections:null},{id:"51457",title:"Bituminous Coal Combustion with New Insights",doi:"10.5772/64136",slug:"bituminous-coal-combustion-with-new-insights",totalDownloads:1418,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"As one of the most important primary energy, bituminous coal has been widely applied in many fields. The combustion studies of bituminous coal have attracted a lot of attention due to the releases of hazardous emissions. This work focuses on the investigation of combustion characteristics of Shenmu bituminous pulverized coal as a representative bituminous coal in China with a combined TG-MS-FTIR system by considering the effect of particle size, heating rate, and the total flow rate. The combustion products were accurately quantified by normalization and numerical analysis of MS results. The results indicate that the decrease of the particle size, heating rate, and the total flow rate result in lower ignition and burnout temperatures. The activation energy tends to be lower with smaller particle size, faster heating rate, and lower total flow rate. The MS and FTIR results demonstrate that lower concentrations of different products, such as NO, NO2, HCN, CH4, and SO2, were produced with smaller particle size, slower heating rate, and lower total flow rate. This work will guide to understand the combustion kinetics of pulverized coals and be beneficial to control the formation of pollutants.",signatures:"Guan-Fu Pan, Hong-De Xia and Zhen-Yu Tian",downloadPdfUrl:"/chapter/pdf-download/51457",previewPdfUrl:"/chapter/pdf-preview/51457",authors:[{id:"179391",title:"Prof.",name:"Zhen-Yu",surname:"Tian",slug:"zhen-yu-tian",fullName:"Zhen-Yu Tian"},{id:"179398",title:"MSc.",name:"Guan-Fu",surname:"Pan",slug:"guan-fu-pan",fullName:"Guan-Fu Pan"},{id:"179400",title:"Dr.",name:"Hong-De",surname:"Xia",slug:"hong-de-xia",fullName:"Hong-De Xia"}],corrections:null},{id:"51119",title:"Combustion Characteristics of Waste Tyre Pyrolysis Fuel as Industrial Burner Fuel",doi:"10.5772/63078",slug:"combustion-characteristics-of-waste-tyre-pyrolysis-fuel-as-industrial-burner-fuel",totalDownloads:3118,totalCrossrefCites:3,totalDimensionsCites:7,hasAltmetrics:0,abstract:"This study examined the potential of using waste tyre pyrolysis fuel oil as an industrial burner fuel. The combustion characteristics of tyre-derived fuel (TDF) oil were evaluated using Cuenod NC4 forced draught oil burner equipped with a built-in fuel atomizer and an onboard control system. TDF oil obtained from a local waste tyre treatment facility was blended with petroleum diesel (DF) at TDF volumetric concentration of 40% (TDF40), which was tested against pure petroleum diesel and refined modified tyre-derived fuel (TDF*). Critical combustion parameters such as thermal power output, fuel consumption, flame stability, flue gas temperature, and emissions were investigated to evaluate the performance of the combustion equipment. Using DF as a reference fuel, it was observed that TDF40 required high air-to-fuel ratio (AFR) in order to produce a stable flame with high flame temperature and less emissions. TDF* produced a reasonably stable flame with less sulphur dioxide emissions compared to TDF40; however, its specific fuel consumption (SFC) was higher than that of DF. It was also discovered that the burner’s SFC was higher when fuelled with TDF40. Total contamination and viscosity of TDF oil contribute significantly to the flow characteristics of the fuel, resulting in reduced pressure and subsequently poor fuel atomization. Rapid soot formation at atomizer nozzle was also observed when the burner was fuelled with TDF40. TDF oil and its derivatives (TDF*) produce SO2, NO2 and CO emission levels higher than the acceptable limits as prescribed by the European Air quality standard (EU2015/2193). It was concluded that TDF oil could be used as a potential industrial burner fuel if diluted with petroleum diesel fuel at TDF volumetric concentration of <40% or any ratio that could adjust the viscosity level below 5.3 cSt. Fuel preheating and multistage filtration system are also recommended to reduce total contamination and water levels in the fuel mixture. Exhaust gas scrubbing is recommended due to significantly high sulphur oxide emission in the flue gas.",signatures:"Jefrey Pilusa and Edison Muzenda",downloadPdfUrl:"/chapter/pdf-download/51119",previewPdfUrl:"/chapter/pdf-preview/51119",authors:[{id:"178924",title:"Dr.",name:"Jefrey",surname:"Pilusa",slug:"jefrey-pilusa",fullName:"Jefrey Pilusa"},{id:"184868",title:"Prof.",name:"Edison",surname:"Muzenda",slug:"edison-muzenda",fullName:"Edison Muzenda"}],corrections:null},{id:"51472",title:"Municipal Solid Waste Cofiring in Coal Power Plants: Combustion Performance",doi:"10.5772/63940",slug:"municipal-solid-waste-cofiring-in-coal-power-plants-combustion-performance",totalDownloads:3001,totalCrossrefCites:7,totalDimensionsCites:10,hasAltmetrics:1,abstract:"The combustion of fuel derived from municipal solid waste is a promising cheap retrofitting technique for coal power plants, having the added benefit of reducing the volume of waste disposal in landfills. co-combustion of waste-derived fuel (WDF) and coal, rather than switching to WDF combustion alone in dedicated power plants, allows power plant operators to be flexible toward variations in the WDF supply. Substituting part of the coal feed by processed high calorific value waste could reduce the NOx, SO2, and CO2 emissions of coal power plants. However, the alkaline content of WDF and its potentially harmful interactions with the coal ash, as well as adverse effects from the presence of chlorine in the waste, are important drawbacks to waste-derived fuel use in large-scale power plants. This chapter reviews these points and gives a centralized review of co-combustion experiments reported in the literature. Finally, this chapter underlines the importance of lab-scale experiments previous to any large-scale application and introduces the idea of combining waste and additives dedicated to the capture of targeted pollutants.",signatures:"Odile Vekemans and Jamal Chaouki",downloadPdfUrl:"/chapter/pdf-download/51472",previewPdfUrl:"/chapter/pdf-preview/51472",authors:[{id:"96495",title:"Prof.",name:"Jamal",surname:"Chaouki",slug:"jamal-chaouki",fullName:"Jamal Chaouki"},{id:"179779",title:"Dr.",name:"Odile",surname:"Vekemans",slug:"odile-vekemans",fullName:"Odile Vekemans"}],corrections:null},{id:"51528",title:"Self-sustaining Smouldering Combustion as a Waste Treatment Process",doi:"10.5772/64451",slug:"self-sustaining-smouldering-combustion-as-a-waste-treatment-process",totalDownloads:1808,totalCrossrefCites:3,totalDimensionsCites:12,hasAltmetrics:0,abstract:"This chapter reviews the utilization of self-sustaining smouldering combustion as a treatment for solid or liquid waste, embedded in a porous matrix. Smouldering has been identified as an attractive solution to treat waste with high moisture content. The fundamental aspects of this technology, such as the experimental setup and the ignition mechanism, are described here.",signatures:"Luis Yermán",downloadPdfUrl:"/chapter/pdf-download/51528",previewPdfUrl:"/chapter/pdf-preview/51528",authors:[{id:"179556",title:"Dr.",name:"Luis",surname:"Yermán",slug:"luis-yerman",fullName:"Luis Yermán"}],corrections:null},{id:"51858",title:"Combustion and Emission Characteristics of Blends: -n-Butanol- Diesel (D2); and Dual Alcohols: n-Butanol-Methanol with Gasoline in Internal Combustion Engines",doi:"10.5772/64747",slug:"combustion-and-emission-characteristics-of-blends-n-butanol-diesel-d2-and-dual-alcohols-n-butanol-me",totalDownloads:1774,totalCrossrefCites:1,totalDimensionsCites:2,hasAltmetrics:0,abstract:"A study of the effects of oxygenated alcohol/gasoline/diesel fuel blends on performance, combustion, and emission characteristics in conventional reciprocating engines is reported. On the one hand, in alcohol-gasoline blends, dual alcohols-gasoline blends have not yet been sufficiently proven as suitable alternatives to single alcohol-gasoline blends in engines as far as performance is concerned. On the other hand, n-butanol-diesel, although it has a better miscibility factor in diesel than methanol or ethanol, is limited with regard to extensive application in the diesel engines due to its low cetane number. Engine performance was compared using single alcohol-gasoline and dual alcohol-gasoline blends, where the dual blends were constrained to meet the vapor issues regarding fuels and regulations. The blends were selected in terms of a combination by volume of one being higher alcohol (n-butanol) and the other, lower alcohol (methanol). The engines used for this study included a single-cylinder and a four-cylinder, naturally aspirated, four-stroke spark ignition engines and a four-cylinder, four-stroke compression ignition turbocharged diesel engine. In the n-butanol-diesel studies, a comparison was made with other studies in order to determine how suitable n-butanol-diesel blends were across the biofuel family such as the biodiesel-ethanol-diesel blends. The findings were as follows: The dual alcohols-gasoline blends performed better than the single alcohol-gasoline blends depending on certain compositional ratios of the alcohols in gasoline regardless of vapor pressure consideration. The n-butanol/diesel alcohol blend (B5, B10, and B20, where B5 represents 5% n-butanol and 95% diesel) significantly reduced the regulated emissions in a turbocharged engine compared to other studies using biodiesel-diesel blends. The significant decrease in NOx, CO emissions, and reduction of unburned hydrocarbons content using n-butanol/diesel fuel (DF) blends were found experimentally. The use of dual alcohol /gasoline blends was beneficial due to their shorter combustion duration in crank angles and their higher-energy content compared with single alcohol-gasoline blends. The n-butanol/diesel blend fired in the diesel engine showed a higher brake thermal efficiency and improved brake specific fuel consumption compared to the study by others where ethanol\\diesel and methanol\\diesel blends were used.",signatures:"Lennox Siwale, Lukacs Kristof, Torok Adam, Akos Bereczky, Makame\nMbarawa, Antal Penninger and Andrei Kolesnikov",downloadPdfUrl:"/chapter/pdf-download/51858",previewPdfUrl:"/chapter/pdf-preview/51858",authors:[{id:"24907",title:"Dr.",name:"Ádám",surname:"Török",slug:"adam-torok",fullName:"Ádám Török"},{id:"179004",title:"Dr.",name:"Lennox",surname:"Siwale",slug:"lennox-siwale",fullName:"Lennox Siwale"},{id:"184891",title:"Prof.",name:"Lukacs",surname:"Kristof",slug:"lukacs-kristof",fullName:"Lukacs Kristof"},{id:"184892",title:"Prof.",name:"Akos",surname:"Bereczky",slug:"akos-bereczky",fullName:"Akos Bereczky"},{id:"184893",title:"Prof.",name:"Makame",surname:"Mbarawa",slug:"makame-mbarawa",fullName:"Makame Mbarawa"},{id:"184894",title:"Prof.",name:"Antal",surname:"Penninger",slug:"antal-penninger",fullName:"Antal Penninger"},{id:"184895",title:"Prof.",name:"Andrei",surname:"Kolesnikov",slug:"andrei-kolesnikov",fullName:"Andrei Kolesnikov"}],corrections:null},{id:"51605",title:"Combustion and Emissions of a Diesel Engine Fueled with Diesel-Biodiesel-Ethanol Blends and Supplemented with Intake CO2 Charge Dilution",doi:"10.5772/64470",slug:"combustion-and-emissions-of-a-diesel-engine-fueled-with-diesel-biodiesel-ethanol-blends-and-suppleme",totalDownloads:1751,totalCrossrefCites:1,totalDimensionsCites:8,hasAltmetrics:0,abstract:"This study investigated the influence of a four-cylinder naturally aspirated direct-injection diesel engine fueled with diesel-biodiesel-ethanol blended (DBE) fuels tested at a steady state speed of 1800 rev/min under different engine loads, ethanol volume and intake carbon dioxide (CO2) dilution ratios on engine performance, combustion characteristics, regulated gaseous emissions, and soot agglomerates. Overall, the experimental results indicate that DBE blends can in general improve brake thermal efficiency (BTE) and reduce nitrogen oxides (NOx), carbon monoxide (CO), CO2, volatile organic fractions, particulate mass (PM), and particulate number (PN) concentrations, while brake-specific fuel consumption (BSFC) and hydrocarbon (HC) might increase slightly. Compared with ultra-low-sulfur diesel, DBE blends can maintain a good tradeoff relationship among PM-PN-NOx. Compared with biodiesel, the blended fuels perform better in suppressing brake-specific particle number emissions (BSPN), leading to a reduction of ultrafine and nanoparticle numbers. The combined effect of DBE blends with intake CO2 dilution has marginal effects on BSFC and BTE, significantly reducing NOx emission while slightly increasing particulate emissions. On particulate characteristics, DBE blends produce soots with curved, tortuous, and disorganized nanostructures with low soot burnout temperature and strong oxidation rate favoring PM-PN reduction.",signatures:"Ho Tse",downloadPdfUrl:"/chapter/pdf-download/51605",previewPdfUrl:"/chapter/pdf-preview/51605",authors:[{id:"178575",title:"Dr.",name:"Ho",surname:"Tse",slug:"ho-tse",fullName:"Ho Tse"}],corrections:null},{id:"51802",title:"Low and Medium Calorific Value Gasification Gas Combustion in IC Engines",doi:"10.5772/64459",slug:"low-and-medium-calorific-value-gasification-gas-combustion-in-ic-engines",totalDownloads:2240,totalCrossrefCites:2,totalDimensionsCites:5,hasAltmetrics:0,abstract:"Higher hydrogen to carbon ratio of gasification gases produced from solid fuels has been utilized in internal combustion engines (ICE) since long ago. Advancements in the conversion technologies and the abundant availability of solid fuels added with advancements in the technology of gas engines and their fuelling system have renewed the interest and are believed to be transition fuels from carbon based to hydrogen based. Over the past 30 years, there were many trials to bring back the gasification gas technology in ICE. This study is mainly focused on the investigation of technical challenges with lower and medium calorific value gasification gases in IC engines The range of operation of these fuels is found to be influenced by available injection duration and injector pulse width in direct-injection spark-ignition engines. The lower calorific value of these gases also make them less competitive to CNG and H2 in the dual fueling in CI engine even though they have better advantage in the emissions. Furthermore, red glow color deposit was spotted on the surface of the combustion chamber after short running on all fuels that was resulted from decomposition of iron pentacarbonyl (Fe(CO)5) contaminants.",signatures:"Ftwi Yohaness Hagos, Abd Rashid Abd Aziz, Shaharin A. Sulaiman\nand Bahaaddein K. M. Mahgoub",downloadPdfUrl:"/chapter/pdf-download/51802",previewPdfUrl:"/chapter/pdf-preview/51802",authors:[{id:"178511",title:"Dr.",name:"Ftwi Yohaness",surname:"Hagos",slug:"ftwi-yohaness-hagos",fullName:"Ftwi Yohaness Hagos"},{id:"184763",title:"Prof.",name:"Abd Rashid",surname:"Abd Aziz",slug:"abd-rashid-abd-aziz",fullName:"Abd Rashid Abd Aziz"},{id:"184764",title:"Dr.",name:"Shaharin Anwar",surname:"Sulaiman",slug:"shaharin-anwar-sulaiman",fullName:"Shaharin Anwar Sulaiman"},{id:"184765",title:"M.Sc.",name:"Bahaaddein",surname:"Mahgoub",slug:"bahaaddein-mahgoub",fullName:"Bahaaddein Mahgoub"}],corrections:null},{id:"51796",title:"Phenomenological Modeling of Combustion Process in Diesel Engines Based on Stochastic Method",doi:"10.5772/64749",slug:"phenomenological-modeling-of-combustion-process-in-diesel-engines-based-on-stochastic-method",totalDownloads:1886,totalCrossrefCites:1,totalDimensionsCites:1,hasAltmetrics:0,abstract:"In order to satisfy the growing demand for the reduction of fuel consumption and pollutant emissions, various technologies have been employed in diesel engines. Consequently, to determine the optimal combustion control strategy, many parameters such as injection pressure, nozzle diameter, injection timing, injection quantity, and exhaust gas recirculation (EGR) rate should be selected properly corresponding to the engine operating conditions. It is difficult to obtain the appropriate strategies without understanding the change in combustion process when varying these parameters. To realize parametric studies on combustion control strategy of modern diesel engines, a phenomenological combustion model based on stochastic method was developed. In this model, the modeling of the spray tip and tail penetration after the end of injection, and interaction between the sprays of sequent injection stages were focused on to modify the stochastic combustion model for combustion simulation with multiple injection. The effects of swirl, wall impingement, and adjacent spray interaction are formulated simply to make the combustion model more accurate and computationally efficient. The simulation results were compared with experimental data from a single-cylinder test engine for pilot/main two-stage injection. The results reveal that the model has capability to accurately predict the combustion characteristics and emissions of diesel engine with pilot/main two-stage injection.",signatures:"Long Liu",downloadPdfUrl:"/chapter/pdf-download/51796",previewPdfUrl:"/chapter/pdf-preview/51796",authors:[{id:"178972",title:"Associate Prof.",name:"Long",surname:"Liu",slug:"long-liu",fullName:"Long Liu"}],corrections:null},{id:"51250",title:"Numerical Simulation of Chemical Looping and Calcium Looping Combustion Processes for Carbon Capture",doi:"10.5772/63520",slug:"numerical-simulation-of-chemical-looping-and-calcium-looping-combustion-processes-for-carbon-capture",totalDownloads:1587,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Efficient carbon capture and storage (CCS) technologies are needed to address the rising carbon emissions from power generation using fossil fuels that have been linked to global warming and climate change. Chemical looping combustion (CLC) is one such technology that has shown great promise due to its potential for high-purity carbon capture at low cost. Another CCS technology that has garnered interest in recent years is calcium looping (CaL), which utilizes calcium oxide and the carbonation-calcination equilibrium reactions to capture CO2 from the flue stream of fossil fuel power plants. Computational fluid dynamics (CFD) simulations of two CLC reactors are presented in this chapter, along with system level simulations of CaL for postcombustion carbon capture. CFD simulation of a CLC reactor based on a dual fluidized bed reactor is developed using the Eulerian approach to characterize the chemical reactions in the system. The solid phase consists of a Fe-based oxygen carrier while the gaseous fuel used is syngas. Later, the detailed hydrodynamics in a CLC system designed for solid coal fuel is presented based on a cold flow experimental setup at National Energy Technology Laboratory using the Lagrangian particle-tracking method. The process simulation of CaL using Aspen Plus shows an increasing marginal energy penalty associated with an increase in the CO2 capture efficiency, which suggests a limit on the maximum carbon capture efficiency in practical applications of CaL before the energy penalty becomes too large.",signatures:"Subhodeep Banerjee and Ramesh K. Agarwal",downloadPdfUrl:"/chapter/pdf-download/51250",previewPdfUrl:"/chapter/pdf-preview/51250",authors:[{id:"38519",title:"Prof.",name:"Ramesh K.",surname:"Agarwal",slug:"ramesh-k.-agarwal",fullName:"Ramesh K. Agarwal"}],corrections:null},{id:"52092",title:"Combustion Catalyst: Nano‐Fe2O3 and Nano‐Thermite Al/ Fe2O3 with Different Shapes",doi:"10.5772/64748",slug:"combustion-catalyst-nano-fe2o3-and-nano-thermite-al-fe2o3-with-different-shapes",totalDownloads:1790,totalCrossrefCites:5,totalDimensionsCites:7,hasAltmetrics:0,abstract:"In order to enable the energetic materials to possess a more powerful performance, adding combustion catalysts is a quite effective method. Granular, oval, and polyhedral Fe2O3 particles have been prepared by the hydrothermal method and used to fabricate Al/Fe2O3 thermites. All the Fe2O3 and Al/Fe2O3 thermite samples were characterized using a combination of experimental techniques including scanning electron microscopy (SEM), energy dispersive spectrometer (EDS), X‐ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), transmission electron microscope (TEM), and high‐resolution TEM (HRTEM). The non‐isothermal decomposition kinetics of the composites and nitrocellulose (NC) can be modeled by the Avrami‐Erofeev equation f(α)=3(1–α)[–ln(1–α)]1/3/2 in differential form. Through the thermogravimetric analysis infrared (TG‐IR) analysis of decomposition processes and products, it is speculated that Fe2O3 and Al/Fe2O3 can effectively accelerate the thermal decomposition reaction rate of NC by promoting the O‐NO2 bond cleavage. Adding oxides or thermites can distinctly increase the burning rate, decrease the burning rate pressure exponent, increase the flame temperature, and improve the combustion wave structures of the ammonium perchlorate/hydroxyl‐terminated polybutadiene (AP/HTPB) propellants. Among the three studied, different shapes of Fe2O3, the granular Fe2O3, and its corresponding thermites (Al/Fe2O3(H)) exhibit the highest burning rate due to larger surface area associated with smaller particle size. Moreover, Al/Fe2O3(H) thermites have more effective combustion‐supporting ability for AP/HTPB propellants than Fe2O3 structures and the other two as‐prepared Al/Fe2O3 thermites.",signatures:"Ningning Zhao, Jiachen Li, Fengqi Zhao, Ting An, Rongzu Hu and\nHaixia Ma",downloadPdfUrl:"/chapter/pdf-download/52092",previewPdfUrl:"/chapter/pdf-preview/52092",authors:[{id:"179608",title:"Prof.",name:"Haixia",surname:"Ma",slug:"haixia-ma",fullName:"Haixia Ma"},{id:"179751",title:"Dr.",name:"Ningning",surname:"Zhao",slug:"ningning-zhao",fullName:"Ningning Zhao"},{id:"179753",title:"Dr.",name:"Jiachen",surname:"Li",slug:"jiachen-li",fullName:"Jiachen Li"},{id:"179754",title:"Prof.",name:"Rongzu",surname:"Hu",slug:"rongzu-hu",fullName:"Rongzu Hu"},{id:"179755",title:"Prof.",name:"Fengqi",surname:"Zhao",slug:"fengqi-zhao",fullName:"Fengqi Zhao"}],corrections:null},{id:"51818",title:"Combustion Processes in Interfacial Instabilities",doi:"10.5772/64746",slug:"combustion-processes-in-interfacial-instabilities",totalDownloads:1544,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"Fluid instabilities, particularly interfacial instabilities, have proven to be a powerful mechanism in driving and sustaining combustion processes in several devices of practical interest. Modern combustors are in fact designed to exploit the mixing and combustion characteristics associated with a broad class of canonical, interfacial instabilities. In spite of their relevance to combustor design, a detailed understanding of such flows has been elusive. While much progress has been made in gaining insights into the dynamics of shear-driven flows, an understanding of the interaction between combustion processes and other interfacial instabilities remains preliminary. In this chapter, we review recent results on Rayleigh-Taylor (RT) instability and the shock-driven Richtmyer-Meshkov (RM) instability in the context of combustion. The vast catalogue of research on non-reacting RT and RM flows has demonstrated these instabilities can be manipulated to achieve more efficient and aggressive mixing in comparison with the canonical Kelvin-Helmholtz (KH) problem. This has motivated recent efforts to understand RT/RM instability development in the presence of chemical reactions, leading to combustion and heat release – we present a review of these results and identify opportunities and challenges in this chapter.",signatures:"Praveen Ramaprabhu, Nitesh Attal and Hilda Varshochi",downloadPdfUrl:"/chapter/pdf-download/51818",previewPdfUrl:"/chapter/pdf-preview/51818",authors:[{id:"178580",title:"Associate Prof.",name:"Praveen",surname:"Ramaprabhu",slug:"praveen-ramaprabhu",fullName:"Praveen Ramaprabhu"},{id:"184931",title:"Mr.",name:"Nitesh",surname:"Attal",slug:"nitesh-attal",fullName:"Nitesh Attal"},{id:"184932",title:"Ms.",name:"Hilda",surname:"Varshochi",slug:"hilda-varshochi",fullName:"Hilda Varshochi"}],corrections:null},{id:"51199",title:"Combustion Processes with External Harmonic Excitation using Extended Lindstedt-Poincare Method with Multiple Time Scales",doi:"10.5772/63220",slug:"combustion-processes-with-external-harmonic-excitation-using-extended-lindstedt-poincare-method-with",totalDownloads:1151,totalCrossrefCites:0,totalDimensionsCites:0,hasAltmetrics:0,abstract:"This work treats the control of nonstationary pressure oscillations of combustion processes subject to external harmonic excitation. The low-order van der Pol model of nonstationary combustion processes with two degrees of freedom and a multiplicative feedback control function is considered. Nonstationary oscillations of the combustion process with asynchronous and synchronous excitation, respectively, are analyzed by means of the extended Lindstedt-Poincare (EL-P) method with multiple time scales. The steady-state amplitudes of competitive quenching with asynchronous excitation are not so much affected in comparison with steady-state amplitudes of an autonomous system, opposite to the synchronous excited system. The influence of control parameters on the quenching of the externally excited oscillations is investigated in details.",signatures:"Rudolf R. Pušenjak and Igor Tičar",downloadPdfUrl:"/chapter/pdf-download/51199",previewPdfUrl:"/chapter/pdf-preview/51199",authors:[{id:"179890",title:"Dr.",name:"Rudolf",surname:"Pušenjak",slug:"rudolf-pusenjak",fullName:"Rudolf Pušenjak"},{id:"184820",title:"Dr.",name:"Igor",surname:"Tičar",slug:"igor-ticar",fullName:"Igor Tičar"},{id:"184821",title:"Dr.",name:"Maks, M.",surname:"Oblak",slug:"maks-m.-oblak",fullName:"Maks, M. Oblak"}],corrections:null},{id:"52001",title:"Solution Combustion Synthesis: Applications in Oxide Electronics",doi:"10.5772/64761",slug:"solution-combustion-synthesis-applications-in-oxide-electronics",totalDownloads:2332,totalCrossrefCites:0,totalDimensionsCites:7,hasAltmetrics:0,abstract:"Oxide-based electronics have been well established as an alternative to silicon technology; however, typical processing requires complex, high-vacuum equipment, which is a major drawback, particularly when targeting low-cost applications. The possibility to deposit the materials by low-cost techniques such as inkjet printing has drawn tremendous interest in solution processible materials for electronic applications; however, high processing temperatures still required. To overcome this issue, solution combustion synthesis has been recently pursued. Taking advantage of the exothermic nature of the reaction as a source of energy for localized heating, the precursor solutions can be converted into oxides at lower process temperatures. Theoretically, this can be applied to any metal ions to produce the desired oxide, opening unlimited possibilities to materials’ composition and combinations. Solution combustion synthesis has been applied for the production of semiconductor thin films based on ZnO, In2O3, SnO2 and combinations of these oxides, and also for high κ dielectrics (Al2O3). All of which are required for numerous electronic devices and applications such as fully oxide-based thin-film transistors (TFTs). The properties of produced thin films are highly dependent on the precursor solution characteristics; hence, the influence of several processing parameters; organic fuel, solvent and annealing temperature was studied. Although precursor solution degradation/oxide formation mechanisms are not yet fully understood, particularly for thin films, we demonstrate that high-performance devices are obtained with combustion solution-based metal oxide thin films. The results clearly show that solution combustion synthesis is becoming one of the most promising methods for low-temperature flexible electronics.",signatures:"Rita Branquinho, Ana Santa, Emanuel Carlos, Daniela Salgueiro,\nPedro Barquinha, Rodrigo Martins and Elvira Fortunato",downloadPdfUrl:"/chapter/pdf-download/52001",previewPdfUrl:"/chapter/pdf-preview/52001",authors:[{id:"178884",title:"Prof.",name:"Rita",surname:"Branquinho",slug:"rita-branquinho",fullName:"Rita Branquinho"}],corrections:null}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"},subseries:null,tags:null},relatedBooks:[{type:"book",id:"5437",title:"Developments in Near-Infrared Spectroscopy",subtitle:null,isOpenForSubmission:!1,hash:"e5fa0d1b934788c283a786bc6892f047",slug:"developments-in-near-infrared-spectroscopy",bookSignature:"Konstantinos G. 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by"}}],ofsBooks:[]},correction:{item:{id:"80207",slug:"corrigendum-to-aspects-regarding-thermal-mechanical-fatigue-of-shape-memory-alloys",title:"Corrigendum To: Aspects Regarding Thermal-Mechanical Fatigue of Shape Memory Alloys",doi:null,correctionPDFUrl:"https://cdn.intechopen.com/pdfs/80207.pdf",downloadPdfUrl:"/chapter/pdf-download/80207",previewPdfUrl:"/chapter/pdf-preview/80207",totalDownloads:null,totalCrossrefCites:null,bibtexUrl:"/chapter/bibtex/80207",risUrl:"/chapter/ris/80207",chapter:{id:"62954",slug:"aspects-regarding-thermal-mechanical-fatigue-of-shape-memory-alloys",signatures:"Petrică Vizureanu and Dragoș-Cristian Achiței",dateSubmitted:"April 12th 2018",dateReviewed:"April 25th 2018",datePrePublished:null,datePublished:"September 26th 2018",book:{id:"7213",title:"Shape-Memory Materials",subtitle:null,fullTitle:"Shape-Memory Materials",slug:"shape-memory-materials",publishedDate:"September 26th 2018",bookSignature:"Alicia Esther Ares",coverURL:"https://cdn.intechopen.com/books/images_new/7213.jpg",licenceType:"CC BY 3.0",editedByType:"Edited by",editors:[{id:"91095",title:"Dr.",name:"Alicia Esther",middleName:null,surname:"Ares",slug:"alicia-esther-ares",fullName:"Alicia Esther Ares"}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"}},authors:[{id:"12354",title:"Prof.",name:"Petrică",middleName:null,surname:"Vizureanu",fullName:"Petrică Vizureanu",slug:"petrica-vizureanu",email:"peviz2002@yahoo.com",position:null,institution:{name:"Gheorghe Asachi Technical University of Iași",institutionURL:null,country:{name:"Romania"}}},{id:"209329",title:"Dr.",name:"Mirabela Georgiana",middleName:null,surname:"Minciuna",fullName:"Mirabela Georgiana Minciuna",slug:"mirabela-georgiana-minciuna",email:"mirabela.minciuna@yahoo.ro",position:null,institution:{name:"Gheorghe Asachi Technical University of Iași",institutionURL:null,country:{name:"Romania"}}},{id:"245668",title:"Dr.",name:"Dragos Cristian",middleName:null,surname:"Achitei",fullName:"Dragos Cristian Achitei",slug:"dragos-cristian-achitei",email:"dragos_adc@tuiasi.ro",position:null,institution:null},{id:"245669",title:"Dr.",name:"Manuela Cristina",middleName:null,surname:"Perju",fullName:"Manuela Cristina Perju",slug:"manuela-cristina-perju",email:"cryss_ela@yahoo.com",position:null,institution:null}]}},chapter:{id:"62954",slug:"aspects-regarding-thermal-mechanical-fatigue-of-shape-memory-alloys",signatures:"Petrică Vizureanu and Dragoș-Cristian Achiței",dateSubmitted:"April 12th 2018",dateReviewed:"April 25th 2018",datePrePublished:null,datePublished:"September 26th 2018",book:{id:"7213",title:"Shape-Memory Materials",subtitle:null,fullTitle:"Shape-Memory Materials",slug:"shape-memory-materials",publishedDate:"September 26th 2018",bookSignature:"Alicia Esther Ares",coverURL:"https://cdn.intechopen.com/books/images_new/7213.jpg",licenceType:"CC BY 3.0",editedByType:"Edited by",editors:[{id:"91095",title:"Dr.",name:"Alicia Esther",middleName:null,surname:"Ares",slug:"alicia-esther-ares",fullName:"Alicia Esther Ares"}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"}},authors:[{id:"12354",title:"Prof.",name:"Petrică",middleName:null,surname:"Vizureanu",fullName:"Petrică Vizureanu",slug:"petrica-vizureanu",email:"peviz2002@yahoo.com",position:null,institution:{name:"Gheorghe Asachi Technical University of Iași",institutionURL:null,country:{name:"Romania"}}},{id:"209329",title:"Dr.",name:"Mirabela Georgiana",middleName:null,surname:"Minciuna",fullName:"Mirabela Georgiana Minciuna",slug:"mirabela-georgiana-minciuna",email:"mirabela.minciuna@yahoo.ro",position:null,institution:{name:"Gheorghe Asachi Technical University of Iași",institutionURL:null,country:{name:"Romania"}}},{id:"245668",title:"Dr.",name:"Dragos Cristian",middleName:null,surname:"Achitei",fullName:"Dragos Cristian Achitei",slug:"dragos-cristian-achitei",email:"dragos_adc@tuiasi.ro",position:null,institution:null},{id:"245669",title:"Dr.",name:"Manuela Cristina",middleName:null,surname:"Perju",fullName:"Manuela Cristina Perju",slug:"manuela-cristina-perju",email:"cryss_ela@yahoo.com",position:null,institution:null}]},book:{id:"7213",title:"Shape-Memory Materials",subtitle:null,fullTitle:"Shape-Memory Materials",slug:"shape-memory-materials",publishedDate:"September 26th 2018",bookSignature:"Alicia Esther Ares",coverURL:"https://cdn.intechopen.com/books/images_new/7213.jpg",licenceType:"CC BY 3.0",editedByType:"Edited by",editors:[{id:"91095",title:"Dr.",name:"Alicia Esther",middleName:null,surname:"Ares",slug:"alicia-esther-ares",fullName:"Alicia Esther Ares"}],productType:{id:"1",title:"Edited Volume",chapterContentType:"chapter",authoredCaption:"Edited by"}}},ofsBook:{item:{type:"book",id:"9558",leadTitle:null,title:"Active Learning",subtitle:"Theory and Practice",reviewType:"peer-reviewed",abstract:"In the context of globalization changes in educational systems, it is important to modify approaches to the educational process and introduce learning technologies that allow for maximum involvement in learning. One such technology is the technology of active learning, which engages learners through participation in the cognitive process and certain tasks as well as through the collective activities of the subjects of the educational process. This book discusses the theoretical analysis of active learning and contains practical recommendations for its implementation.",isbn:"978-1-83968-477-7",printIsbn:"978-1-83968-473-9",pdfIsbn:"978-1-83968-478-4",doi:"10.5772/intechopen.87353",price:119,priceEur:129,priceUsd:155,slug:"active-learning-theory-and-practice",numberOfPages:174,isOpenForSubmission:!1,isSalesforceBook:!1,isNomenclature:!1,hash:"c55b272766d51c3d563abc25c026b939",bookSignature:"Olena Lutsenko and Gregory Lutsenko",publishedDate:"February 9th 2022",coverURL:"https://cdn.intechopen.com/books/images_new/9558.jpg",keywords:null,numberOfDownloads:3971,numberOfWosCitations:0,numberOfCrossrefCitations:3,numberOfDimensionsCitations:4,numberOfTotalCitations:7,isAvailableForWebshopOrdering:!0,dateEndFirstStepPublish:"August 24th 2020",dateEndSecondStepPublish:"September 21st 2020",dateEndThirdStepPublish:"November 20th 2020",dateEndFourthStepPublish:"February 8th 2021",dateEndFifthStepPublish:"April 9th 2021",dateConfirmationOfParticipation:null,remainingDaysToSecondStep:"2 years",secondStepPassed:!0,areRegistrationsClosed:!0,currentStepOfPublishingProcess:5,editedByType:"Edited by",kuFlag:!1,biosketch:"Dr. Olena Ivanivna Lutsenko now works on research topics at the Hlukhiv National Pedagogical University of Alexander Dovzhenko and teaches medical and biological disciplines. She has published over 74 scientific works including five textbooks and two monographs.",coeditorOneBiosketch:"Dr. Gregory Lucenko is a Head of the Department of Pedagogy and Management of Education at Glukhiv National Pedagogical University. He was the head of the state budget project 'Creation of the Internet portal' Diffusion and solid-phase reactions. DIFTRANS ',He worked as a contractor in the state budget project 'Fundamentalisation of Vocational Education and Methods of its Implementation in the Content of Physical Education.",coeditorTwoBiosketch:null,coeditorThreeBiosketch:null,coeditorFourBiosketch:null,coeditorFiveBiosketch:null,editors:[{id:"225667",title:"Mrs.",name:"Olena",middleName:null,surname:"Lutsenko",slug:"olena-lutsenko",fullName:"Olena Lutsenko",profilePictureURL:"https://mts.intechopen.com/storage/users/225667/images/system/225667.jpg",biography:"Olena Lutsenko obtained her Ph.D. in 2021. Since 2015, she has had the opportunity to work on a departmental research topic on the fundamentalization of natural education for sustainable development. She is currently working on scientific topics at Oleksandr Dovzhenko Hlukhiv National Pedagogical University, Ukraine, and teaches medical and biological disciplines and features of teaching methods of these disciplines. She has published more than seventy-nine scientific papers, including five textbooks and five monographs. 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Goats are small ruminants that were among first domesticated farm animals which are into herding from about 10,000 years ago [1]. The acclimatising capacity of goat is peculiar as they can be economically reared in areas ranging from tropics, deserts, temperate to harsh climate of mountains without fluctuation in productivity [2]. Goat is a major supplier of dairy and meat products for rural people and regarded as a “Poor man’s cow” [3].
The world’s goat population has increased by around 55% from 1991 to 2011 whereas cattle population grew only by 9% and sheep population decreased by about 7%. In between these years Goat’s milk (GM) production increased by around 70% [4] which can however be greater because of unreported home consumption of GM in large amount in case of developed countries [5]. The production of GM in world showed an increase of 62% from 1993 to 2013 from 11 to 18 million tons [6]. Except in Antarctic, GM consumption by human is found in all over the world [6]. The contribution of developing countries in goat rearing is noteworthy. Out of total goat population more than 90% alone is maintained by countries in Asia and Africa [7]. Majority of goats including dairy ones in Asia are in the hands of small-scale farmers, among which many of them are poor and landless [8]. The production and consumption pattern of GM and its products has increased in recent decades. Growth in consumption of such milk products is due to their known beneficial effects on human health which are already recognised by the scientific community (Table 1).
Total2 [million head (%)] | Dairy [million head (%)] | Milk [Mt (%)] | Yield3 [L/head] | |||||
---|---|---|---|---|---|---|---|---|
Continent | Sheep | Goats | Sheep | Goats | Sheep | Goats | Sheep | Goats |
Asia | 512 (43.6) | 556 (55.4) | 135 (54.0) | 106 (52.1) | 4.73 (45.6) | 8.04 (52.7) | 35.1 | 76.2 |
Africa | 352 (30.0) | 388 (38.7) | 79 (31.7) | 80 (39.6) | 2.54 (24.5) | 3.93 (25.7) | 32.2 | 48.9 |
Europe | 131 (11.2) | 17 (1.7) | 33 (13.3) | 9 (4.3) | 3.01 (29.0) | 2.54 (16.6) | 90.8 | 290.1 |
America | 84 (7.1) | 38 (3.8) | 3 (1.1) | 8 (4.0) | 0.09 (0.9) | 0.75 (4.9) | 33.0 | 93.4 |
Oceania | 95 (8.1) | 4 (0.4) | <0.1 (0) | <0.1 (0) | <0.01 (0) | <0.01 (0) | — | — |
Total | 1,173 (100) | 1,003 (100) | 250 (100) | 203 (100) | 10.37 (100) | 15.26 (100) | 41.5 | 75.3 |
Total annual milk supply of goat is about 3.4%, sheep milk is 1.4%, camel milk is 0.2%, cow milk is 85% while buffalo contribute 11% [9]. About 80% of total GM supply is only from Asia [3] of which main countries include India, China, Bangladesh, Iran, Pakistan and Turkey [10]. 36.7% of world dairy goats are reared in Indian subcontinent producing 40.7% of the world’s goat milk, with India (60.6%, 129 L/doe), Bangladesh (16.9%, 37 L/doe) and Pakistan (13.3%, 100 L/doe) [11]. Out of 500 breeds of goat only half dozen is raised for milking purpose and about 600–700 million dairy goats are present in the world (Figure 1) [12].
World goat milk production trends from 1916 to 2016 (solid line) and forecast to 2030 by using time series model (dashed line). Source: Ref. [
The major species of milching dairy goat includes Sannen, Anglo-nubian, Toggenburg, British alpine. They produce good quantity of milk. For an instance Toggenburg can produce 7.57 litres of milk per day [13]. Factors like breed, season of kidding, stage of lactation, species, age, parity, colostrums, feed, environmental conditions, length of dry period, disease, body weight etc. can cause change in GM composition [14].
Milk is clean lacteal secretion from mammalians shortly after parturition. GM being highly compatible and nourishing complete natural food, can serve as a substitute for a meal. Its acceptability has increased in recent years which is mainly due to its low fat and capacity to neutralize acids and toxins present in body and also due to higher gross composition than that of cow’s milk. GM has potential that enable tolerating different technological treatments to obtain a product which have ability to satisfy the demand of consumer in terms of health, nutrition, safety and pleasure. Beside qualitative criteria (colour and odour), other aspects should also be given equal importance (milk protein, fat, bacteriology, freezing point, lipolysis, somatic cell count, immunoglobulins, inhibitors etc) for improving the quality of milk [15]. Human milk consumption as defined by the International Congress of Food “milk is the product of the total, full and uninterrupted milking of dairy female in good health, also nourished and not overworked”. It must be collected properly with no colostrum [16].
GM can be consumed as an alternative to cow milk as it is less allergenic [17] and highly digestible [18]. It has been reported by Park (1994) that between 40 and 100% of patients allergic to cow milk proteins can tolerate GM. It is also recommended to pregnant women and infant to fulfil their nutritional requirement at growing stage [19] and also to old and convalescent people [20]. It is immune to several diseases and boost the immunity system of human. It differs from cow and human milk as it shows distinct alkalinity, higher buffering capacity and certain therapeutic values in medicine and human nutrition. The nutritional and health benefits of GM are related to a number of medical problems, the most important being food allergies and a pure substitute for those who are allergic to cow milk (Figure 2) [22].
Goat milk production in the world from 2000 to 2013 (million tons). Source: Ref. [
This review chapter is a compilation of numerous research and review paper. In the course of writing this chapter we have reviewed number of articles, proceedings, magazines, newspaper, bulletin, editorial etc, Solids so that a broad range of information could be collected and presented. So, this is a thorough and detailed information regarding goat milk and its nutritive as well as medicinal values, accordingly which its conclusion has been drawn.
GM because of its specific composition is being considered as a high-quality raw material for manufacturing food of infants along with population with particular needs [23]. Fresh goat milk appears as a white, opaque liquid with a little sweet in taste having no odour in practical life [24]. The Solid content in goat milk ranges from 12 to 18% while protein content in solid lies between 3 and 4.5% in goat milk [25]. Compositional and nutritive value of goat milk can be preserved, enhanced and improved by the aid of processing [26].
The composition and milk yield of goat varies with varying factors such as diet, breed, management, environment, age, stage of lactation, season, plane of nutrition etc. [27]. GM having all the composition in adequate amount is preferred as a high-quality milk and it should be free from pathogens and foreign substances such as antibiotics, antiseptics or residue of pesticides and should not differ from that of cow’s milk in taste and odour. GM is proven to have a better and efficient digestibility, buffering capacity, alkalinity and therapeutic values as compared to human and cow’s milk in human nutrition and medicine [28].
The physical properties like surface tension, viscosity and specific gravity of GM are higher in comparison with cow milk [17]. The fat globules of GM are smaller than bovine milk. The smaller sized fat globules allow dispersion and more homogeneous mixing of fat in milk. The average diameter of globules in GM ranges from 1.5–2 μm while that of cow’s milk ranges from 2.5–3.5 μm [24] which is the reason behind GM to be known as “self homogenised or naturally homogenised milk”. Having smaller fat globules and greater surface area facilitate GM to be more digestible than cow milk as total surface area of globules gets effectively connected with the lipids [29]. Also, lipases in the gut tentatively attack the lipids ester linkages in the short chain fatty acids more readily and rapidly helping in faster digestion of GM [30]. GM is enriched with higher proportion of short and medium chain fatty acids, mostly butyric, palmitic, caproic, capric, caprylic, linolenic, alpha- linolenic, lauric, myristic acid while lower in longer chain fatty acids like oleic and stearic [23]. Among these 3 (Capric, Capryllic and Caproic) have been named after goat because of their predominance in GM [31].
Milk is composed of casein and whey protein where casein (alpha s1, alpha s2, beta and Κ-caseins) represent 80% of proteins while rest part is filled by major whey proteins (alpha-lactoglubulin and alpha-lactalbumin) [32]. The major protein in cow milk is alpha s1 casein while in GM it is beta casein. One of the most representative free amino acid in GM is Taurine [33] which is higher in GM as compared to cow milk [34]. Out of 10 essential amino acids 6 (threonine, isoleucine, lysine, cystine, tyrosine, valine) are found in high amount in GM than in cow milk [35]. Main reason behind the low amount of folic acid in GM is that it contains high concentration of folate binding protein making it unavailable for human to digest and absorb. The heavy fat content and mucus-producing components of cow milk are absent in GM and it is complete source of proteins containing all essential amino acids [36, 37]. Fragments of GM caseins have been found to possess antimicrobial peptides that shows strong activity against gram negative bacteria [38].
The content of Vitamin A in GM is higher than in cow milk as goat convert all beta carotene from foods to Vitamin A (retinol) in milk which is the reason for whiter GM and milk fat [17]. Also, higher casein content is GM promotes the same [39]. It contains 25% more Vitamin B6, 47% more Vitamin A than cow’s milk and it mainly possesses Vitamin A2 [40]. Content of Vitamin D of both GM and cow milk is similar that is mostly needed during infancy (Table 2) [41].
Vitamin | Goat milk | Cow milk |
---|---|---|
Vitamin A (IU) | 185 | 126 |
Vitamin D (IU) | 2.2 | 2.0 |
Thiamine (mg) | 0.068 | 0.045 |
Riboflavin (mg) | 0.21 | 0.16 |
Niacin (mg) | 0.27 | 0.08 |
Pantothenic acid (mg) | 0.31 | 0.32 |
Vitamin B6 (mg) | 0.046 | 0.042 |
Folic acid (ug) | 1.0 | 5.0 |
Biotin (ug) | 1.5 | 2.0 |
Vitamin B12 (ug) | 0.065 | 0.357 |
Vitamin C (mg) | 1.29 | 0.94 |
Major carbohydrate in GM is Lactose whose content is slightly lower in GM than in cow’s milk [42]. Lactose, a valuable nutrient favours intestinal absorption of calcium, phosphorus and also in proper utilisation of vitamin D [31]. It is crucial for milk synthesis and during secretion of milk in the duct system of udder [5]. As compared to cow milk, GM contains surplus amount of lactose derived oligosaccharides. Other carbohydrates that are present in small amount includes oligosaccharides, glycopeptides, glycoproteins and nucleotides [42]. GM oligosaccharides are thought to be exhibiting the anti-inflammatory effects in induced colitis [43]. GM oligosaccharides are especially beneficial for infants due to their prebiotic and anti-infective properties (Table 3) [45].
Component | Cow milk | Goat milk | Human milk |
---|---|---|---|
Protein | 3.58 | 3.52 | 1.63 |
Fat | 4.14 | 4.25 | 3.75 |
Total solids | 13.19 | 13.00 | 12.57 |
Solids not fat | 9.25 | 7.75 | 8.82 |
Lactose | 4.96 | 4.27 | 6.98 |
Ash | 0.71 | 0.86 | 0.21 |
GM contains major and trace minerals that includes Ca, Na, Mg, P, K, Zn, Mn, Se, Cu, Co, Fe which have great health benefits. Percentage of Zn in GM is higher than in cow’s milk that is responsible for maintaining healthy skin, healing of wound, act as antioxidant and eliminate reactive oxygen species via its role as a cofactor for antioxidant enzyme superoxide dismutase (SOD). Mineral content in GM is higher than that of human and cow milk ranging from 0.7 to 0.85% [46]. GM contains 13% more calcium than cow’s milk per serving and 134% more potassium [47]. Selenium content in goat and human milk is higher than that found in cow milk [48]. The Selenium in GM plays a key role in acting as a cofactor for the functioning of glutathione peroxidase (GPX), an antioxidant enzyme which scavenges harmful free radical in body and helps in macrophage activation (Table 4) [49].
Mineral (mg) | Goat milk | Cow milk |
---|---|---|
Ca | 134 | 122 |
P | 121 | 119 |
Mg | 16 | 12 |
K | 181 | 152 |
Na | 41 | 58 |
Cl | 150 | 100 |
S | 28 | 32 |
Fe | 0.07 | 0.08 |
Cu | 0.05 | 0.06 |
Mn | 0.032 | 0.02 |
Zn | 0.56 | 0.53 |
Se | 1.33 | 0.96 |
Because of the highest nutritional value, GM is preferred over cow and buffalo milk [50]. The nutritional and health benefits of GM are directly related to the medical problems that are faced by people of which main being allergies towards milk proteins obtained from cow’s milk [51]. It provides 70 calories per 100 ml. The superior digestibility of GM, its proper fatty acid composition and content of bioactive compounds seem to give those properties to it that help in treating or preventing certain medical conditions. Bioactive peptides derived from milk plays vital role in human health and nutrition. The most vulnerable ones are infants, aged people and pregnant women as their immune system could answer at any time if extra supplement is not administered.
The amount of calcium and phosphate supplied from GM is of much importance to human nutrition. It contains 1.2 g calcium and 1 g phosphate per litre which is higher than that contained in human milk. So, GM offer excess of calcium and phosphorus to human infant that is easily absorbed by them [30]. GM supply adequate amount of Vitamin A and niacin to human infant. Though it supplies excess of thiamine, riboflavin and pantothenic acid [5, 30] it is deficient in terms of Vitamin C, D, B12, pyridoxine and folate [52]. So, these nutrients should be supplied at the time of infant feeding by applying appropriate fortification. American Academy of Paediatrics forbade the use of GM products for infants under one year mainly because they can cause intestinal irritation and anaemia. Infants of such age who are allergic to cow’s milk-based formulas are only fed on goat’s milk formula after properly consulting baby’s doctor or paediatric nutritionist [53].
One of the reasons that consumers are accepting GM and its products in an appreciable manner is due to its nutritive value. It is beneficial in maintaining health, physiological functions, in the nutrition of child and elderly ones [54]. It is reported that it contains off flavour. This is due to the fact that membranes around fat globules in GM are more fragile which may relate to their greater susceptibility in developing off flavour than in cow milk. However, fresh milk obtained under sanitary conditions from properly fed and hygienically managed goats is found to be free from such objectionable flavour and odour [55].
Cow’s milk is reported to be mucus forming for many people but goat milk is not only non-mucus forming but also help in neutralising the mucus. GM has been a viable alternative for those children who are having difficulties in digesting cow’s milk as it is second best option, first being mother’s milk. The composition of goat and human milk is almost similar. Children who drink goat milk tend to remain more satisfied between meals and sleep through the night [56]. 2.5% of infants during first 3 years of their life suffer from cow milk allergy [57] while this percentage rise from 12 to 30% for infants who are less than 3 months old [58]. Not just for infants but also for adults and nursing mother, GM has been good alternative because of its unique properties. GM is rich in vitamins, minerals, trace minerals, enzymes, protein, fatty acids and amino acids (especially tryptophan) that are easily utilised by human body. The greatest advantage of consuming GM by many people lies in the fact that those who cannot digest cow’s milk find it easy in digesting GM without any complications. The reason for this is yet to be known but it is thought that this action in GM is due to lower lactose content (7% less than that of cow milk). There is one fact which says that our body takes 20 minutes to digest GM while it takes 2–3 hours in digesting cow’s milk [56].
Conjugated Linoleic Acid (CLA), an important bioactive component is naturally found in GM which helps in immune response stimulation. Mediators of immunity such as cytokines, prostaglandins, immunoglobulins etc, are modified by the action of CLA. The CLA possess ability to reduce the allergy related immunoglobulin IgE in humans that suggest anti-allergic potential of lipid [38]. The richness of GM in Medium Chain Triglycerides (MCT) helps in improving nutrients absorption and energy production in the body. MCT along with other amino acids exhibits antimicrobial activity [59].
Taurine (free amino acid) performs different roles in human body such as growth and brain development, formation of bile salts, calcium flux modulation, stabilisation of membranes as an osmoregulation by attenuating toxic substances. Its deficiency in human tissues may be the result of cardiomyopathy, epilepsy, lack of growth etc. [60]. In case of animal studies, Taurine is suggested as an important amino acid in alleviating muscle fatigue and can build up exercise capacity during workouts [46].
Amount of Vitamin A contained in GM is similar to human milk which is crucial for innate and adaptive immune responses that also includes cell-mediated immunity and antibody responses as well. Deficiency of this vitamin leads to decreased innate immunity that will affect NK cell function and phagocytic activity. Vitamin D plays an important role in the immune system and help preventing infections, autoimmune diseases, cancer and diabetes. Vitamin C which is present in greater amount in GM than in cow’s milk has shown to affect many aspects of the immune system including regulation of immunity via antiviral and anti-oxidant properties [49].
As compared to cow’s milk GM has higher content of Ca, P, K, Se, chloride, Zn, Cu [61, 62]. Potassium is crucial in acid/base balance and also in the proper functioning of muscles, nerves and kidneys. Chloride maintains fluid balance, blood pH and osmotic pressure. Calcium and phosphorus strengthen the structure of bones, muscles and help in blood coagulation. Selenium is vital in protecting cell against free radicals and also it acts as a major component in preventing dengue fever. Copper helps in metabolism of iron and oxygen and also defence the cell against free radicals [49].
Multivitamins, proteins, minerals (including trace one), fatty acids as well as Lactic acid bacteria in GM help in fighting human against diseases including diarrhoea, vomiting, constipation, gastric discomfort, respiratory disorders and many other [20].
Dengue fever which is transmitted by the bite of
Proteins derived from milk are proved to be precursors of antimicrobial peptides. GM have been reported to have antimicrobial activity of several pathogenic bacteria that are contained in food materials. GM caseins fragments are good source of antimicrobial peptides that are effective against gram negative bacteria [38]. Alpha-S2 Casein (CSN1S2) in GM is studied for its antimicrobial property. The result indicated that this caprine protein has inhibition activity that opposes the pathogenic bacteria by optimal concentration of 5 mg/ml in all bacteria especially Gram positive (
CVD includes diseases that involves heart and blood vessels, veins, coronary heart diseases, high blood pressure, arrhythmias, atherosclerosis etc. Inorder to maintain normal blood pressure and proper heart functioning a good amount of potassium rich food is needed and GM serves for the same. GM supply 498.7 mg of K and 121.5 mg of Na that is sufficient in preventing high blood pressure and protecting against atherosclerosis. Atherosclerosis is likely to occur if people are adopting unhygienic inactive lifestyle (smoking, diet and exercise) and after incidence of dyslipidemia, diabetes, high blood pressure etc. [74]. The Angiotensin converting enzyme (ACE) inhibitory peptides obtained after hydrolysis of GM caseins have shown beneficial effects on blood pressure regulation [75]. Fat in GM reduces total cholesterol levels thereby making it as a food of choice for the prevention of cardiac disorders. GM have selenium and its absence is thought to cause irreversible cardiomyopathy [66]. When excess amount of fat is deposited in the arterial wall and blood vessels then cardiac arrest is common. In case of goat, fat present in its milk and meat is considered as user friendly [76]. The Low-density lipoprotein (LDL) is known as “bad cholesterol” as it transports cholesterol from liver to blood vessels while High-density lipoprotein is “good cholesterol” as it transports cholesterol from vessels to oxidative modification of LDL which suppresses atherosclerosis [74].
The composition of GM exceeds cow’s milk in monounsaturated fatty acids (MUFA), polyunsaturated fatty acids (PUFA) and MCT which have beneficial health effects especially in cardiovascular conditions [23]. Due to anti-inflammatory effects of CLA GM decreases the atherosclerosis incidence [38]. The MCT present in GM includes capric, caproic and caprylic acids which comprises 15% of total milk fat. The higher constituent of MCT in GM helps in lowering cholesterol deposits in the arteries, dissolve and prevent cholesterol deposits in the gallstones. Also, the presence of MCT decrease the synthesis of endogenous cholesterol thus helping to boost the immune system [77]. Capric, caprylic acids and MCT are used in treatment of many diseases including cystic fibrosis, coronary by-pass etc, because of their unique ability to provide energy directly without being deposited in adipose tissues [78]. GM is naturally homogenised while cow’s milk requires homogeniser. When fat globules are forcibly broken down by mechanical homogeniser, an enzyme associated with milk fat i.e., xanthine oxidase become free and can penetrate intestinal wall. When it reaches blood stream via intestinal wall, it can cause tissue scar on the heart and arteries which leads to mechanism causing arteriosclerosis while it is prevented in case of GM [77].
Infants who are suffering from problems like gastrointestinal disturbances, vomiting, colic, constipation and diarrhoea can be treated when they are fed GM. Pasteurised GM is easily tolerated by infants who are suffering from such diseases. GM easily assimilates in human body as chemical composition of GM is almost similar to human one which therefore enhances the bioavailability of nutrients in it. It is reported that GM consumption increases the uptake of Iron and Copper in digestive tract [79]. The readily bioavailable nature of GM has increased its consumption in recent years. The availability of beneficial gut microbes increases when GM is taken. Soft curd formed in fermented milk of goat is easily digested and absorbed [22]. People who are lactose intolerance can also easily digest it because of its small sized fat globules in which the total surface area of globules are effectively connected with lipids and also the fat globules of GM do not clump together as in cow’s milk [29].
GM is the vital source of biorganic sodium, the absence of which causes arthritis. Human stomach stores more sodium than any other organ. The absence of sodium causes digestive discomforts and inhibits stomach from producing needed enzymes leading to bloating and even ulcers. Soft curd in GM can be advantageous for adult humans who are suffering from gastrointestinal disturbances and ulcers [5]. Also, the property of high buffering capacity of GM appears to be fruitful in treating gastric ulcers [52]. The intestinal inflammation and clinical symptoms (diarrhoea and bloody stools) in colitis can be decreased by consuming GM. The presence of oligosaccharides in its milk exhibits anti-inflammatory effect in the management of Inflammatory bowel disease (IBD) [43]. It has been reported in one study of rats infected with colitis when fed GM oligosaccharides reduces and promotes recovery of damaged colonic mucosa due to less severe lesions in colon and production of more favourable gut microbiota [38].
Alpha lactalbumin present in GM is anti-carcinogenic by nature. CLA in GM is full of anti-carcinogenic properties. It is also studied that tumour cells in patients with skin and bladder cancers were killed by alpha lactalbumin. The passive transfer of serum albumin in GM to the blood has an inhibitory effect against growth and development of breast cancerous cells [75].
Proteins are most common antigens that are important for proper body functioning. On the basis of nature, allergies can be acute or chronic that have symptoms ranging from non-life threatening to life threatening. It is recommended as an substitute for patients with cow milk allergy [54]. Eczema, Rhinitis and digestive problems are simple symptoms while bronchospasm, anaphylaxis and urcaria are severe one. GM is less allergenic than cow’s milk. GM is thought to resolves 30–40% of problematic cases of childhood cow milk allergy. Some researches shows that alpha S1 casein in cow’s milk is the reason of cow milk intolerance. It has been found that level of alpha S1 casein in GM is 89% lower than that of cow milk. Therefore, GM is less allergic and improves digestive disorder, colic diseases etc. in people with cow milk sensitivities [80]. Lactose intolerance in many child and adults is caused by the deficiency of lactase enzyme that functions in easing the digestion of lactose. Generally, in case of lactose intolerant individuals, unhydrolyzed lactose passes into the large intestine whereby it is fermented by the aid of microbes which results in the production of hydrogen, methane, carbon-dioxide, SCFA leading to flatulence, diarrhoea as well as abdominal pain [81]. When ulcers worsen it takes a new form i.e., cancer and it is well known that the high buffering capacity of GM prevents gastric ulcers [52].
GM is used as a good alternative to treat mammary, colorectal and colon cancer [82] in case of animal models, as well as in vitro models of human melanoma [83] colorectal and breast cancer [84] because of the known anticarcinogenic properties of CLA [85] which is in surplus amount in it. Lactic Acid Bacteria (LAB) present in goat milk exhibit potential role in combating against cancer [86]. The risk of occurrence of cancer, carcinogenic toxicity and tumour suppression are prevented by LAB present in GM [87]. The bacteria in GM after isolation and microencapsulation can be used as a probiotics to cure cancer [88]. The study of different strains of LAB in GM can strengthen the research of cancer prevention [89].
Se is vital as it plays role in proper functioning of the immune system and thyroid activity as well as participates in spermiogenesis thereby affecting fertility [90]. It is an integral part of the antioxidant capacity of the organism [91]. GM and its products act as immunity booster and prevents from several illness in infants [87]. There is involvement of many cells like T lymphocytes (T-cells), Natural Killer (NK) cells and B-lymphocytes (B-cells) in the innate and adaptive immune response. Even though the structure of Immunoglobulin’s (Ig) are similar, minor differences exist in the main immunological classes (IgG, IgM, IgA, IgD and IgE). The major properties of serum immunoglobulin accounts for IgG and IgA. Several researches have shown immunomodulatory effects of GM in case of both in-vitro and human studies. The release of nitric oxide (NO) from human blood cells exhibits cardio protective effects in the milk consumer and also possesses antibacterial activity which prevents them from infections. Content of sialic acid is higher in GM which acts as an important biological component in playing crucial role in brain development and in boosting infant immunity [92, 93].
Since GM is rich surplus to calcium, proteins, bioactive compounds it can be taken as a “functional and nutraceutical health drink”. The role played by GM in eliminating major health complications including digestive, respiratory, immunological, viral, cardiac, cancer, allergy, osteoporosis, malabsorption, anaemia etc. favours longevity to human life. The contribution of small developing nations in the production of GM should not be neglected rather new technological innovation’s assistance to those nations will uplift the production and contribute to mankind as the consumption of GM has increased in developed nations. The compositional attributes of GM can be raised if goats are provided with ample browsing, adequate temperature and stress-free environment. It should be supplemented with folic acid and can be fortified if consumers find its odour unpleasant.
Goat rearing has several economic returns after its milk, meat, hair etc. are marketed. Goat business can help uplifting the life standard of people in rural areas. The unique properties of GM and its products carve for its more marketing potential. Its nutritional value in treating diseases has broaden its future prospects. If grading up is followed to improve the performance of local breeds of different nations then eventually more milk can be produced that benefits human. That is why more thorough and detailed descriptive research in this field is needed to fight against life taking diseases.
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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. 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Other positions she has held at the university include Vice-Dean of Master Programs, Vice-Dean of the Degree in Biology and Vice-Dean for Mobility and Enterprise and Engagement at the Faculty of Science (University of Alicante). She received her Bachelor in Biology in 1998 (University of Alicante) and her PhD in 2003 (Biochemistry, University of Alicante). She undertook post-doctoral research at the University of East Anglia (Norwich, U.K. 2004-2005; 2007-2008).\nHer multidisciplinary research focuses on investigating archaea and their potential applications in biotechnology. She has an H-index of 21. She has authored one patent and has published more than 70 indexed papers and around 60 book chapters.\nShe has contributed to more than 150 national and international meetings during the last 15 years. Her research interests include archaea metabolism, enzymes purification and characterization, gene regulation, carotenoids and bioplastics production, antioxidant\ncompounds, waste water treatments, and brines bioremediation.\nRosa María’s other roles include editorial board member for several journals related\nto biochemistry, reviewer for more than 60 journals (biochemistry, molecular biology, biotechnology, chemistry and microbiology) and president of several organizing committees in international meetings related to the N-cycle or respiratory processes.",institutionString:null,institution:{name:"University of Alicante",institutionURL:null,country:{name:"Spain"}}},editorTwo:null,editorThree:null},{id:"15",title:"Chemical Biology",coverUrl:"https://cdn.intechopen.com/series_topics/covers/15.jpg",isOpenForSubmission:!0,editor:{id:"441442",title:"Dr.",name:"Şükrü",middleName:null,surname:"Beydemir",slug:"sukru-beydemir",fullName:"Şükrü Beydemir",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y00003GsUoIQAV/Profile_Picture_1634557147521",biography:"Dr. Şükrü Beydemir obtained a BSc in Chemistry in 1995 from Yüzüncü Yıl University, MSc in Biochemistry in 1998, and PhD in Biochemistry in 2002 from Atatürk University, Turkey. 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Waisundara",profilePictureURL:"https://mts.intechopen.com/storage/users/194281/images/system/194281.jpg",biography:"Dr. Viduranga Waisundara obtained her Ph.D. in Food Science\nand Technology from the Department of Chemistry, National\nUniversity of Singapore, in 2010. She was a lecturer at Temasek Polytechnic, Singapore from July 2009 to March 2013.\nShe relocated to her motherland of Sri Lanka and spearheaded the Functional Food Product Development Project at the\nNational Institute of Fundamental Studies from April 2013 to\nOctober 2016. She was a senior lecturer on a temporary basis at the Department of\nFood Technology, Faculty of Technology, Rajarata University of Sri Lanka. She is\ncurrently Deputy Principal of the Australian College of Business and Technology –\nKandy Campus, Sri Lanka. She is also the Global Harmonization Initiative (GHI)",institutionString:"Australian College of Business & Technology",institution:null}]},{type:"book",id:"6820",title:"Keratin",subtitle:null,coverURL:"https://cdn.intechopen.com/books/images_new/6820.jpg",slug:"keratin",publishedDate:"December 19th 2018",editedByType:"Edited by",bookSignature:"Miroslav Blumenberg",hash:"6def75cd4b6b5324a02b6dc0359896d0",volumeInSeries:2,fullTitle:"Keratin",editors:[{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"}}}]},{type:"book",id:"7978",title:"Vitamin A",subtitle:null,coverURL:"https://cdn.intechopen.com/books/images_new/7978.jpg",slug:"vitamin-a",publishedDate:"May 15th 2019",editedByType:"Edited by",bookSignature:"Leila Queiroz Zepka, Veridiana Vera de Rosso and Eduardo Jacob-Lopes",hash:"dad04a658ab9e3d851d23705980a688b",volumeInSeries:3,fullTitle:"Vitamin A",editors:[{id:"261969",title:"Dr.",name:"Leila",middleName:null,surname:"Queiroz Zepka",slug:"leila-queiroz-zepka",fullName:"Leila Queiroz Zepka",profilePictureURL:"https://mts.intechopen.com/storage/users/261969/images/system/261969.png",biography:"Prof. Dr. Leila Queiroz Zepka is currently an associate professor in the Department of Food Technology and Science, Federal University of Santa Maria, Brazil. She has more than fifteen years of teaching and research experience. She has published more than 550 scientific publications/communications, including 15 books, 50 book chapters, 100 original research papers, 380 research communications in national and international conferences, and 12 patents. She is a member of the editorial board of five journals and acts as a reviewer for several national and international journals. 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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. Received the CSIR-SRF (Senior Research Fellow) award-2018, FIMSA (Federation of Immunological Societies of Asia-Oceania) Travel Bursary award to attend the IUIS-IIS-FIMSA Immunology course-2019',institutionString:"Nirma University",institution:{name:"Nirma University",country:{name:"India"}}},{id:"334383",title:"Ph.D.",name:"Simone",middleName:"Ulrich",surname:"Ulrich Picoli",slug:"simone-ulrich-picoli",fullName:"Simone Ulrich Picoli",position:null,profilePictureURL:"https://mts.intechopen.com/storage/users/334383/images/15919_n.jpg",biography:"Graduated in Pharmacy from Universidade Luterana do Brasil (1999), Master in Agricultural and Environmental Microbiology from Federal University of Rio Grande do Sul (2002), Specialization in Clinical Microbiology from Universidade de São Paulo, USP (2007) and PhD in Sciences in Gastroenterology and Hepatology (2012). 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:"12",type:"subseries",title:"Human Physiology",keywords:"Anatomy, Cells, Organs, Systems, Homeostasis, Functions",scope:"Human physiology is the scientific exploration of the various functions (physical, biochemical, and mechanical properties) of humans, their organs, and their constituent cells. The endocrine and nervous systems play important roles in maintaining homeostasis in the human body. Integration, which is the biological basis of physiology, is achieved through communication between the many overlapping functions of the human body's systems, which takes place through electrical and chemical means. Much of the basis of our knowledge of human physiology has been provided by animal experiments. Because of the close relationship between structure and function, studies in human physiology and anatomy seek to understand the mechanisms that help the human body function. The series on human physiology deals with the various mechanisms of interaction between the various organs, nerves, and cells in the human body.",coverUrl:"https://cdn.intechopen.com/series_topics/covers/12.jpg",hasOnlineFirst:!0,hasPublishedBooks:!0,annualVolume:11408,editor:{id:"195829",title:"Prof.",name:"Kunihiro",middleName:null,surname:"Sakuma",slug:"kunihiro-sakuma",fullName:"Kunihiro Sakuma",profilePictureURL:"https://mts.intechopen.com/storage/users/195829/images/system/195829.jpg",biography:"Professor Kunihiro Sakuma, Ph.D., currently works in the Institute for Liberal Arts at the Tokyo Institute of Technology. He is a physiologist working in the field of skeletal muscle. He was awarded his sports science diploma in 1995 by the University of Tsukuba and began his scientific work at the Department of Physiology, Aichi Human Service Center, focusing on the molecular mechanism of congenital muscular dystrophy and normal muscle regeneration. His interest later turned to the molecular mechanism and attenuating strategy of sarcopenia (age-related muscle atrophy). His opinion is to attenuate sarcopenia by improving autophagic defects using nutrient- and pharmaceutical-based treatments.",institutionString:null,institution:{name:"Tokyo Institute of Technology",institutionURL:null,country:{name:"Japan"}}},editorTwo:{id:"331519",title:"Dr.",name:"Kotomi",middleName:null,surname:"Sakai",slug:"kotomi-sakai",fullName:"Kotomi Sakai",profilePictureURL:"https://s3.us-east-1.amazonaws.com/intech-files/0033Y000031QtFXQA0/Profile_Picture_1637053227318",biography:"Senior researcher Kotomi Sakai, Ph.D., MPH, works at the Research Organization of Science and Technology in Ritsumeikan University. She is a researcher in the geriatric rehabilitation and public health field. She received Ph.D. from Nihon University and MPH from St.Luke’s International University. Her main research interest is sarcopenia in older adults, especially its association with nutritional status. Additionally, to understand how to maintain and improve physical function in older adults, to conduct studies about the mechanism of sarcopenia and determine when possible interventions are needed.",institutionString:null,institution:{name:"Ritsumeikan University",institutionURL:null,country:{name:"Japan"}}},editorThree:null,series:{id:"10",title:"Physiology",doi:"10.5772/intechopen.72796",issn:"2631-8261"},editorialBoard:[{id:"213786",title:"Dr.",name:"Henrique P.",middleName:null,surname:"Neiva",slug:"henrique-p.-neiva",fullName:"Henrique P. 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