Carbon Dioxide Capture and Conversion: Advanced Materials and Processes provides fundamental principles, updated knowledge and recent developments of various advanced processes for CO2 mitigation and transformation. This comprehensive overview of CO2 capture and conversion covers nanoporous materials, biomaterials, innovative solvents, advanced membrane technology, nanocatalyst synthesis and design, cutting-edge characterization techniques, and intrinsic mechanisms and kinetics. In addition to techno-economical evaluation and lifecycle assessment for CO2 capture and conversion processes, the future perspectives, opportunities and current challenges regarding these processes in terms of industrial applications are systematically provided in this book.
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Dr. Sonil Nanda is an Assistant Professor and Canada Research Chair in “Clean Agricultural Technology and Energy” in the Department of Engineering, Faculty of Agriculture at Dalhousie University, Canada. He received his Ph.D. in Biology from York University, Canada; his M.Sc. in Applied Microbiology from Vellore Institute of Technology (VIT University), India; and his B.Sc. in Microbiology from the Odisha University of Agriculture and Technology, India. He was a Postdoctoral Fellow at York University and the University of Western Ontario and a Research Associate in the Department of Chemical and Biological Engineering at the University of Saskatchewan in Saskatoon, Canada. He was the Director of Research and Development at Titan Clean Energy Projects Corporation in Craik, Saskatchewan. Dr. Nanda’s research areas focus on producing advanced biofuels and biochemicals through thermochemical and biochemical conversion technologies, including gasification, pyrolysis, carbonization, torrefaction, and fermentation. He has gained expertise in the hydrothermal gasification of various organic wastes and biomass, including agricultural and forestry residues, industrial effluents, municipal solid waste, cattle manure, sewage sludge, food wastes, waste tires, and petroleum residues to produce hydrogen fuel. His parallel interests are generating hydrothermal flames for treating hazardous wastes, agronomic biochar applications, phytoremediation of heavy metal-contaminated soils, and carbon capture and sequestration. Dr. Nanda has published 19 edited books, 85 book chapters, and more than 165 peer-reviewed journal articles. He is the editor of some popular books entitled “Emerging Biofuels” (Elsevier), “Biomass to Bioenergy: Modern Technological Strategies for Biorefineries” (Elsevier), “Innovations in Thermochemical Technologies for Biofuel Processing” (Elsevier), “New Dimensions in Production and Utilization of Hydrogen” (Elsevier), “Biorefinery of Alternative Resources: Targeting Green Fuels and Platform Chemicals” (Springer Nature), “Recent Advancements in Biofuels and Bioenergy Utilization” (Springer Nature), “Catalytic and Noncatalytic Upgrading of Oils” (American Chemical Society), “Fuel Processing and Energy Utilization” (CRC Press), “Bioprocessing of Biofuels” (CRC Press), “Progressive Thermochemical Biorefining Technologies” (CRC Press), “Algal Biorefinery: Developments, Challenges and Opportunities” (Routledge), “Biohydrogen: Developments and Prospects” (Apple Academic Press), and “Biomethane: Developments and Prospects” (Apple Academic Press). Dr. Nanda is a fellow member of the Society for Applied Biotechnology in India and a life member of the Indian Institute of Chemical Engineers, the Association of Microbiologists of India, the Indian Science Congress Association, and the Biotech Research Society of India. He is also a member of several chemical engineering societies across North America, such as the American Chemical Society, the American Institute of Chemical Engineers, the Chemical Institute of Canada, the Combustion Institute-Canadian Section, and Engineers Without Borders Canada. Dr. Nanda is an Assistant Subject Editor of the International Journal of Hydrogen Energy (Elsevier) as well as an Associate Editor of Environmental Chemistry Letters (Springer Nature) and Applied Nanoscience (Springer Nature). He has also edited several Special Issues in renowned journals such as the International Journal of Hydrogen Energy (Elsevier), Chemical Engineering Science (Elsevier), Catalysis Today (Elsevier), Biomass Conversion and Biorefinery (Springer Nature), Waste and Biomass Valorization (Springer Nature), Topics in Catalysis (Springer Nature), SN Applied Sciences (Springer Nature), Chemical Engineering & Technology (Wiley), and The Canadian Journal of Chemical Engineering (Wiley).
Dai-Viet N. Vo is deputy director of the Institute of Applied Technology and Sustainable Development, Nguyen Tat Thanh University, in Vietnam. He worked as the principal investigator and co-investigator for 23 different funded research projects related to sustainable and alternative energy, and published two books, 15 book chapters, more than 300 peer-reviewed journals including 101 prestigious review articles, and more than 80 conference proceedings. Dr. Vo is an assistant subject editor for the International Journal of Hydrogen Energy (Elsevier) and guest editor for several special issues in high-impact factor journals such as the International Journal of Hydrogen Energy (Elsevier), Comptes Rendus Chimie (Elsevier), Chemical Engineering Science (Elsevier), and Topics in Catalysis (Springer), amongst others.
Carbon Dioxide Capture and Conversion: Advanced Materials and Processes provides fundamental principles, updated knowledge and recent developments of various advanced processes for CO2 mitigation and transformation. The comprehensive and systematic overview of CO2 capture and conversion covering nanoporous materials, biomaterials, innovative solvents, advanced membrane technology, nanocatalyst synthesis and design, cutting-edge characterization techniques, intrinsic mechanism and kinetics as well as process design and scale-up is thoroughly emphasized in this book. In addition to techno-economical evaluation and life-cycle assessment for CO2 capture and conversion processes, the future perspectives, opportunities and current challenges regarding these processes in terms of industrial applications are systematically provided in this book. As a result, this book will be an interesting, useful and beneficial hub for academic researchers, postgraduates, scientists and engineers to seek fundamental knowledge and practical applications during their research and development, studies and industrial operation.
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Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Carbon Dioxide Capture and Conversion: Advanced Materials and Process provides information about the fundamental principles and recent development of various methods and processes for CO2 mitigation and transformation. Beginning with a brief overview of recent advancements in CO2 capture and valorization technologies, the book elaborates on CO2 capture and conversion by covering nanoporous materials, biomaterials, innovative solvents, advanced membrane technology, nanocatalyst synthesis and design, cutting-edge characterization techniques as well as reaction mechanisms and kinetics. In addition to techno-economic evaluation and life-cycle assessment for CO2 capture and conversion processes, future perspectives, opportunities and current challenges regarding these processes in terms of their industrial applications, are systematically discussed. Carbon Dioxide Capture and Conversion: Advanced Materials and Process is, therefore, an essential resource for academic researchers, postgraduates, scientists, and engineers seeking fundamental knowledge and practical applications for use in their research and development, studies and industrial operations. Englisch. Nº de ref. del artículo: 9780323855853
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Taschenbuch. Condición: Neu. Carbon Dioxide Capture and Conversion | Advanced Materials and Processes | Sonil Nanda (u. a.) | Taschenbuch | Einband - fest (Hardcover) | Englisch | 2022 | Elsevier Inc | EAN 9780323855853 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu. Nº de ref. del artículo: 120310921
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