Current Developments in Biotechnology and Bioengineering: Biological Treatment of Industrial Effluents provides extensive coverage of new developments, state-of-the-art technologies, and potential future trends in data-based scientific knowledge and advanced information on the role and application of environmental biotechnology and engineering in the treatment of industrial effluents. These treatment processes have been broadly classified under aerobic and anaerobic processes which determines the scope and level of pollutant removal. Chapters in this volume review the most recent developments and perspectives at different environmental cleanup operation scales.
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Prof Duu-Jong Lee is currently a Life-Time Specially Appointed Professor of National Taiwan University (NTU) and Chair Professor and Vice President of National Taiwan University of Science and Technology (NTUST). He obtained his Bachelor (1984) and PhD (1989) degrees both at Chemical Engineering Department, NTU. Professor Lee has strong research interest in the area of industrial wastewater treatment, biomass to energy and environmental management, especially in microscale transport/reaction process in biomass matrix. During the past 27 years of his career, he has completed several projects successfully and developed various processes with full-scale applications. The research carried out till-date has credited him with more than 1000 publications/communications. The citations in SCOPUS on Dr Lee's work has exceeded 14000 with h=57. Professor Lee is the recipient of many national and international awards and fellowships. He was also the President of the Taiwan Institute of Chemical Engineers with 3500 members in Taiwan and overseas.
Prof Patrick C. Hallenbeck, microbiologist, obtained a Ph.D. in Biophysics from the University of California Berkeley (USA) and held post-doctoral positions at the French Nuclear Energy Center, Grenoble (France), and the University of California, Davis (USA) before taking up a position as professor in the Department of Microbiology and Immunology, University of Montreal and a Senior Scientist at the US Air Force Academy Life Sciences Research Center. Dr. Hallenbeck's research interests are in microbial physiology, applied microbiology and biotechnology, biological energy production, anaerobic metabolism, and nitrogen fixation. Dr. Hallenbeck is President of the Biohydrogen subdivision of the International Hydrogen Association. He has served on the organizing committees of numerous international conferences, was chair of ISPP2009, and was chair of BioH2 2013. He is author of over sixty original research publications, twenty-two reviews and book chapters, and numerous abstracts in conference proceedings. He is editor of two books. Prof. Hallenbeck won Outstanding Scientist award for 2012 from the IFIBiop (www.ifibiop.org). He is currently researching the role of metabolite sensing and signaling in the regulation of microbial metabolism, and using metabolic engineering to increase biofuels production. He is editorial board member in Bioresource Technology, Journal of Bacteriology, Frontiers in Microbiology, and Marine Biotechnology and Section Editor of Biotechnology for Biofuels.
Prof. Ngo is currently a Professor of Environmental Engineering and serving as Deputy Director of Centre for Technology in Water and Wastewater, Co-Director of Joint Research Centre for Protective Infrastructure Technology and Environmental Green Bioprocess, School of Civil and Environmental Engineering, Faculty of Engineering and Information Technology, University of Technology Sydney. He has been duly elected as Fellow of International Water Association (FIWA) and Fellow and Lead Researcher of the International Bioprocessing Association (FIBA and LRIBA) while serving as IBA Council Member.
Prof. Ashok Pandey is currently Executive Director, Centre for Energy and Environmental Sustainability-India, Lucknow. His major research and technological development interests are industrial and environmental biotechnology and energy biosciences, focusing on biomass to biofuels and chemicals, waste to wealth and energy, etc.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardback. Etat : New. Current Developments in Biotechnology and Bioengineering: Biological Treatment of Industrial Effluents provides extensive coverage of new developments, state-of-the-art technologies, and potential future trends in data-based scientific knowledge and advanced information on the role and application of environmental biotechnology and engineering in the treatment of industrial effluents. These treatment processes have been broadly classified under aerobic and anaerobic processes which determines the scope and level of pollutant removal. Chapters in this volume review the most recent developments and perspectives at different environmental cleanup operation scales. N° de réf. du vendeur LU-9780444636652
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Etat : New. Outlines available biochemical processes for the treatment of solid industrial waste Covers aerobic and anaerobic treatments, their mechanisms, and selection criteria Highlights specific industrial applications, such as anammox pr. N° de réf. du vendeur 594686709
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Hardback. Etat : New. Current Developments in Biotechnology and Bioengineering: Biological Treatment of Industrial Effluents provides extensive coverage of new developments, state-of-the-art technologies, and potential future trends in data-based scientific knowledge and advanced information on the role and application of environmental biotechnology and engineering in the treatment of industrial effluents. These treatment processes have been broadly classified under aerobic and anaerobic processes which determines the scope and level of pollutant removal. Chapters in this volume review the most recent developments and perspectives at different environmental cleanup operation scales. N° de réf. du vendeur LU-9780444636652
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