Microbiome in Ecosystem: A Sustainable Approach for Wastewater Treatment: Developments in Wastewater Treatment Research and Processes delves deeply into the pioneering use of microbiome for the sustainable treatment of waste water. The book examines the biochemical, physicochemical, and molecular pathways of microbes involved in waste water treatment processes, elucidating their indispensable contributions to environmental preservation and sustainable development. From the exploration of microbiome-generated nanoparticles to the discourse on bioengineering methodologies and the synthesis of bioactive metabolites and enzymes, the book provides a thorough analysis of state-of-the-art techniques and advancements in the field. The book reveals invaluable insights into the microbiome of diverse ecosystems, including their multifaceted functions, interactions, and the underlying molecular, genetic, and biochemical processes relevant to waste water treatment. Emphasizing global challenges and offering forward-looking perspectives, the book serves as an essential reference for students, researchers, scientists, and professionals across various disciplines such as biotechnology, microbiology, environmental science, and waste treatment engineering.
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Dr. Maulin P. Shah is a distinguished environmental scientist, academician, and globally recognized expert in the fields of environmental biotechnology and sustainable
wastewater treatment. He has made significant contributions to advancing eco-friendly
technologies for pollution control, particularly through innovative biological treatment processes. Dr. Shah holds extensive academic and research experience, with a strong focus on
industrial wastewater treatment, bioremediation, and microalgae-based technologies. His work emphasizes the integration of sustainability principles with practical engineering solutions, helping industries reduce their environmental footprint.
Remarkably, Dr. Shah has edited over 300+ books covering a wide spectrum of cutting-edge domains, including industrial wastewater microbiology, bioremediation, biodegradation, algal biotechnology, biofuel, bioenergy, circular economy, metagenomics related to wastewater treatment, and enzyme engineering. This exceptional editorial contribution reflects his deep expertise and unparalleled commitment to advancing global knowledge in environmental science.
Over the years, he has also authored and contributed to numerous high-impact
research papers and scholarly books published by reputed international publishers. His
publications are widely cited and serve as essential references for researchers, academicians, and industry professionals worldwide.
He is actively associated as an Editorial Board Member in more than 30 high-reputed
international journals affiliated with leading organizations and publishers such as
International Water Association, American Chemical Society, Royal Society of Chemistry,
Elsevier, Springer, Taylor & Francis, Wiley, IOP Publishing, Apple Academic Press,
Scrivener Publishing, and Bentham Science Publishers. His extensive editorial involvement
highlights his leadership and recognition in the global scientific community.
Dr. Shah is widely recognized for his collaborative research with leading scientists
across the globe, promoting interdisciplinary solutions to complex environmental challenges.
His work effectively bridges the gap between fundamental research and real-world industrial
applications. In addition to his research excellence, he has been invited as a keynote speaker at numerous national and international conferences, where he shares valuable insights on sustainable development, wastewater management, and environmental innovation. He is also deeply committed to mentoring students and young researchers, fostering academic growth and inspiring future leaders in environmental science and engineering.
Beyond academia, Dr. Shah contributes to industry-oriented solutions and policy-
relevant research aimed at environmental protection, resource recovery, and sustainable
development. Through his relentless dedication and visionary approach, Dr. Maulin P. Shah
has established himself as a leading authority in environmental sustainability, committed to
building a cleaner, greener, and more sustainable future.
Dr. Deepanwita Deka received her B.Sc. degree (2009) and M.Sc. degree (2011) in Botany with specialization Microbiology from Gauhati University, Guwahati, Assam, India. She earned her M.Phil. and Ph.D. degree in 2013 and 2020 respectively from Microbial Ecology Laboratory, Department of Botany, Gauhati University. She efficiently worked on Plant and Pharmaceutical microbiology during her M.Phil. and Ph.D. research. She is an active researcher and her research interests cover mainly Plant-microbe interactions, Agricultural microbiology, Pharmaceutical microbiology, Environmental Microbiology, Bioremediation, Myco-Nanoparticles etc. Dr. Deka received many scholarships, awards and fellowship during her education. She has many publications in different National and International Journals and Books (Elsevier, Springer, CRC Press etc.) on various aspects of microbiology covering her interests. She is the editor of 3 books international repute (1 Elsevier and 2 Springer).
Microbiome in Ecosystem: A Sustainable Approach for Wastewater Treatment: Developments in Wastewater Treatment Research and Processes delves deeply into the pioneering use of microbiome for the sustainable treatment of waste water. The book examines the biochemical, physicochemical, and molecular pathways of microbes involved in waste water treatment processes, elucidating their indispensable contributions to environmental preservation and sustainable development. From the exploration of microbiome-generated nanoparticles to the discourse on bioengineering methodologies and the synthesis of bioactive metabolites and enzymes, the book provides a thorough analysis of state-of-the-art techniques and advancements in the field. The book reveals invaluable insights into the microbiome of diverse ecosystems, including their multifaceted functions, interactions, and the underlying molecular, genetic, and biochemical processes relevant to waste water treatment. Emphasizing global challenges and offering forward-looking perspectives, the book serves as an essential reference for students, researchers, scientists, and professionals across various disciplines such as biotechnology, microbiology, environmental science, and waste treatment engineering.
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