This book details microbial remediation of azo dyes from wastewater including information on existing methods and technologies, their graduation, the emergence of new technologies, industrial practices, and real-case studies. Emphasis is placed on industrial applications and the elimination of toxic pollutants from wastewater through bacterial approach. Specific aspects discussed include effective separation through new adsorbents / newcomers, ion exchange process, coagulation / formulations, separations, and biological methods from wastewater. This book explains a paradigm shift towards the recovery of materials and energy from azo dye containing wastewater.Features: Provides information on the topic of prokaryotic-based technologies for azo dye degradation in wastewater treatment plant. Describes microbial enzymes and their role in bioremediation of environmental pollutants. Covers industrial acid mine tailing wastes, plastic wastes, distillery, and pulp paper industry effluent. Discusses critical insight into limitations of related technologies. Explains concepts through illustrations, figures, tables, and trivia boxes.This book aims at Researchers, Professionals, Graduate Students in Bioremediation and Environmental Protection, Waste Management, Applied Microbiology, Botany and Plant Biotechnology.
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This book details microbial remediation of azo dyes from wastewater including information on existing methods and technologies, the graduation of existing technologies, the emergence of new technologies, industrial practices and real-case studies. Emphasis is on the elimination of toxic pollutants from wastewater through bacterial approach.
Les mer
1: Azo Dye Degradation by The Combination of Physicochemical and Biological Process2: An insight in to the past, present and the future of azo dyes3: Microbial Remediation of Azo Dyes through Bacterial Approach4: Molecular Approaches in Microbial Remediation of Azo Dyes through Bacterial Approach 5: Microbes and microbial enzymes in bioremediation of environmental pollutants6: Microbial Communities for ammonium removal from wastewater in activated sludge system combined with low-cost biochar – a review7: Microbial Degradation of Azo Dyes present in Textile Industry Wastewater8: The Use of Microorganism for Degradation of Azo Dye9: Lignolytic Enzymes and Role in Bioremediation of Environmental Pollutants: Prospects and Challenges10: Biodegradation of Synthetic Dyes from Textile Industry by Microbes11: Removal of emerging contaminants in water/wastewater by microbes12: Systems Biology Aided Functional Analysis of Microbes with Rich Bioremediation Potential for Environmental Pollutants 13: Bioremediation of Azo dye14: Microbial Degradation of Azo Dye Using Bacteria15: Bioremediation: A Low-Cost and Clean-Green Technology for Environmental Management16: Phytoremediation: A Novel and Promising Approach for clean-up of Heavy Metal-Contaminated Soils associated with microbes 17: The combination of biosorption and enzymatic degradation of Azo Dyes18: Combination of Physico-chemical and Biological Methods for Azo-Dye Degradation19: Cyanobacteria Mediated Bioremediation of Hazardous Dyes20: Microbial Enzymes and their Role in Bioremediation of Environmental Pollutants: Prospects and Challenge
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Produktdetaljer

ISBN
9780367673468
Publisert
2024-10-09
Utgiver
Vendor
CRC Press
Vekt
666 gr
Høyde
254 mm
Bredde
178 mm
Aldersnivå
P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet
Antall sider
344

Redaktør

Om bidragsyterne

Dr. Maulin P Shah is an active researcher and scientific writer in his field for over 20 years. His research interests include Biological Wastewater Treatment, Environmental Microbiology, Biodegradation, Bioremediation, & Phytoremediation of Environmental Pollutants from Industrial Wastewaters. He has published more than 250 research papers in national and international journals of repute on various aspects of microbial biodegradation and bioremediation of environmental pollutants. He is the editor of 70 books of international repute (Elsevier, Springer, and CRC Press, RSC, De Gruyter, Nova).