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    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Kemi
    4. Analytisk kemi

    Scaling Up of Microbial Electrochemical Systems

    From Reality to Scalability

    AvDipak Ashok Jadhav,Soumya Pandit

    Häftad, Engelska, 2022

    Del i serien Advances in Green and Sustainable Chemistry

    2 182 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Scaling Up of Microbial Electrochemical Systems: From Reality to Scalability is the first book of its kind to focus on scaling up of microbial electrochemical systems (MES) and the unique challenges faced when moving towards practical applications using this technology. This book emphasizes an understanding of the current limitations of MES technology and suggests a way forward towards onsite applications of MES for practical use. It includes the basics of MES as well as success stories and case studies of MES in the direction of practical applications.

    This book will give a new direction to energy researchers, scientists and policymakers working on field applications of microbial electrochemical systems-microbial fuel cells, microbial electrolysis cells, microbial electrosynthesis cells, and more.



    • Promotes the advancement of microbial electrochemical systems, from lab scale to field applications
    • Illustrates the challenges of scaling up using successive case studies
    • Provides the basics of MES technology to help deepen understanding of the subject
    • Addresses lifecycle analysis of MES technology to allow comparison with other conventional methods

    Produktinformation

    • Utgivningsdatum:2022-02-04
    • Mått:152 x 229 x 26 mm
    • Vikt:450 g
    • Format:Häftad
    • Språk:Engelska
    • Serie:Advances in Green and Sustainable Chemistry
    • Antal sidor:512
    • Förlag:Elsevier Science
    • ISBN:9780323907651

    Utforska kategorier

    • Analytisk kemi inom Naturvetenskap och teknik

    Mer om författaren

    Dipak Ashok Jadhav is a research professor at the Korea Maritime and Ocean University, Busan, South Korea. His research interests lie in microbial fuel cells, bioelectrochemical systems, sanitation, bioenergy research, water management, and waste-to-energy. He has received several prestigious awards and fellowship including Young Technological Innovation Award (GYTI), Young Engineers Award, Promising Engineers Award, Swachthon Award from Ministry, DAAD fellowship, Silver medal for post graduate studies at IIT Kharagpur, etc. His research area is microbial fuel cell, Bioelectrochemical system, Sanitation, Bioenergy research, Water management, Waste to Energy recovery. To his credits, there are over 33 papers in various peer-reviewed SCI journals including Renewable and Sustainable energy reviews, Bioresource Technology, Energy, Applied Biochemistry and Biotechnology, etc. and also authored 19 book chapters. He has presented the work at national and international conferences in the area of bioelectrochemical system and bioenergy. He is also serving as editorial board member /reviewers for International Journals and member for several scientific societies in the field of microbial fuel cell and bioenergy research. He is also editor for book on microbial electrochemical system.Dr. Soumya Pandit is a senior assistant professor at Sharda University, Greater Noida, Delhi NCR, India. He pursued his doctoral studies from Indian Institute of Technology, Kharagpur and completed his postdoctoral research work (PBC fellow) at the Department of Desalination and Water Treatment, The Zuckerberg Institute for Water Research (ZIWR), Ben-Gurion University of the Negev. He is a recipient of North West University, South Arica Post-doctoral fellowship. He has authored 21 research papers in peer-reviewed journals and has authored 22 book chapters and published 3 Indian patents. He holds a BTech and MTech in Biotechnology. His current research focuses on microbial electrochemical systems for bioenergy harvesting, biohythane, bacterial biofilm and biofouling study, etc. He serves as a reviewer for Frontiers in Environmental Microbiology, editorial board member in SCIREA Journal of Biology, and the Journal of Korean Society of Environmental Engineers (JKSEE). Dr. S. Gajalakshmi is an Assistant Professor and Head (i/c) at Centre for Pollution Control and Environmental Engineering, Pondicherry University, Puducherry, India, with more than 15 years of experience in teaching and research. She is a Gold Medallist in BSc and MSc and has an MPhil and PhD in Environmental Science and Engineering from Pondicherry University. She was awarded ‘Best Teacher Award’, Pondicherry University for the years 2014, 2015, 2016, 2018. Her research interests are solid waste management, nutrient dynamics of soil, domestic and industrial wastewater treatment, energy, and microbial fuel cells. She has published over 50 publications in peer reviewed prestigious journals, has authored one book and contributed more than 10 chapters in other books. She is granted one patent on a unique wastewater treatment process and one patent published on novel process for ligninous waste treatment. Dr. Maulin P. Shah is a distinguished environmental scientist, academician, and globally recognized expert in the fields of environmental biotechnology and sustainablewastewater treatment. He has made significant contributions to advancing eco-friendlytechnologies for pollution control, particularly through innovative biological treatment processes. Dr. Shah holds extensive academic and research experience, with a strong focus onindustrial 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-impactresearch papers and scholarly books published by reputed international publishers. Hispublications 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-reputedinternational journals affiliated with leading organizations and publishers. His extensive editorial involvementhighlights his leadership and recognition in the global scientific community.Dr. Shah is widely recognized for his collaborative research with leading scientistsacross the globe, promoting interdisciplinary solutions to complex environmental challenges.His work effectively bridges the gap between fundamental research and real-world industrialapplications. 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 sustainabledevelopment. Through his relentless dedication and visionary approach, Dr. Maulin P. Shahhas established himself as a leading authority in environmental sustainability, committed tobuilding a cleaner, greener, and more sustainable future.

    Innehållsförteckning

    • Section 1: Basics of microbial electrochemical systems1. Introduction to microbial electrochemical systems2. Electroactive biofilm and electron transfer in microbial electrochemical systems3. Advancement in Anode materials for microbial electrochemical system applications4. Advancement in antifouling cathode materials and ORR cathodic catalysts for MES applications5. Modifications in ion exchange separators and Membranes for scaling up applications of MES6. Evaluation of performance of microbial electrochemical system and role of operating conditionsSection 2: Scaling up of microbial electrochemical systems7. Recent progress in scaling up of microbial electrochemical systems8. Pilot scale application of microbial electrolysis cells9. Scaling-up applications of microbial fuel cell10. Stacking of microbial fuel cells and electrochemical perspective for scaling up11. Microbial electrosynthesis applications for onsite applications12. Application of bioelectrochemical system for sanitation and wastewater treatment13. Coupling of microbial electrochemical systems with conventional wastewater treatment systems: Possibility and Reality14. Septic tank microbial fuel cells: Utilization of human waste and urine for in situ bioelectricity generation15. Power management for stacking of microbial fuel cells and maximum power point tracking technology Section 3: Scaling up challenges and perspectives16. Present Scaling up challenges and perspectives for microbial electrochemical systems17. Microbial electrochemical systems: challenges for commercialization and how it can be addressed18. Numerical and simulation approach for scaling up of microbial electrochemical systems19. Energy and cost economic analysis for microbial electrochemical systems20. Life cycle analysis of microbial electrochemical systems