Aerobic and Anaerobic Microbial Treatment of Industrial Wastewater

£95.00

Available for Pre-order. Due September 2024.
Aerobic and Anaerobic Microbial Treatment of Industrial Wastewater Editor: Maulin P. Shah Format: Hardback First Published: Published By: Taylor & Francis Ltd
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Pages: 276 Illustrations and other contents: 17 Tables, black and white; 26 Line drawings, black and white; 1 Halftones, black and white; 27 Illustrations, black and white Language: English ISBN: 9781032463582 Category:

Industrial wastewater can contain many toxic pollutants as well as varying concentrations of organic and inorganic matter. These pollutants can be carcinogenic, mutagenic, or hardly biodegradable, which could cause serious human health risks and affect other aquatic and terrestrial biota as well. Biological treatment techniques for industrial wastewater, including aerobic and anaerobic digestion, are known to be environmentally friendly, clean, and generally superior to other physicochemical techniques. Aerobic and Anaerobic Microbial Treatment of Industrial Wastewater presents the latest information on multiple bioremediation treatment techniques, summarizes the sources, occurrence, and removal of industrial pollutants, and suggests the most appropriate treatment options for different scenarios. Describes the biochemistry of pollutant removal by aerobic and anaerobic digestion. Highlights emerging pollutants as well as resource recovery techniques from contaminated industrial wastewater. Emphasizes the role of both conventional and innovative novel technologies in aerobic and anaerobic microbial bioremediation of pollutants originating from industrial wastewater.

Weight0.54756 kg
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Author Biography

Maulin P. Shah has more than 260 research publication in highly reputed national and international journals. He has edited 70 books in waste-water microbiology, Industrial waste-water treatment with Elsevier, Springer, and CRC Press. His work has been focused to assess the impact of industrial pollution on microbial diversity of wastewater following cultivation dependent and cultivation independent analysis. His major work involves isolation, screening, identification, and Genetic Engineering of high impact of Microbes for the degradation of hazardous materials.