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    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Biologi

    Wastewater Treatment Reactors

    Microbial Community Structure

    AvMaulin P. Shah,Susana Rodriguez-Couto

    Häftad, Engelska, 2021

    2 250 kr

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

    Beskrivning

    Wastewater Treatment Reactors: Microbial Community Structure analyzes microbial community structure in relation to changes in physico-chemical parameters, the gene content (metagenome) or gene expression (metatranscriptome) of microbial communities in relation to changes in physico-chemical parameters, physiological aspects of microbial communities, enrichment cultures or pure cultures of key species in relation to changes in physico-chemical parameters, and modeling of potential consequences of changes in microbial community structure or function for higher trophic levels in a given habitat.

    As several studies have been carried out to understand bulking phenomena and the importance of environmental factors on sludge settling characteristics, which are thought to be strongly influenced by flocculation, sludge bulking, foaming and rising, this book is an ideal resource on the topics covered.



    • Presents the state-of-the-art techniques and applications of omics tools in wastewater treatment reactors (WWTRs)
    • Describes both theoretical and practical knowledge surrounding the fundamental roles of microorganisms in WWTRs
    • Points out the reuse of treated wastewater through emerging technologies
    • Covers the economics of wastewater treatment and the development of suitable alternatives in terms of performance and cost effectiveness
    • Discusses cutting-edge molecular biological tools
    • Gives in-depth knowledge to study microbial community structure and function in wastewater treatment reactors

    Produktinformation

    • Utgivningsdatum:2021-05-17
    • Mått:191 x 235 x 36 mm
    • Vikt:1 320 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:644
    • Förlag:Elsevier Science
    • ISBN:9780128239919

    Utforska kategorier

    • Biologi inom Naturvetenskap och teknik
    • Tillverkningsteknik inom Naturvetenskap och teknik
    • Miljöteknik inom Naturvetenskap och teknik

    Mer om författaren

    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. Susana Rodríguez-Couto is a professor in biological water treatment at LUT University, Finland. She got her B.Sc. and M.Sc. in Chemistry (Industrial Chemistry) from the University of Santiago de Compostela in 1992 and her Ph.D. in Chemistry in 1999 from the University of Vigo, obtaining the maximal grade (magna cum laude) and, in addition, she was awarded with the Extraordinary Prize for Doctoral Thesis in Chemistry. She worked as an Associate Professor and an Isidro Parga Pondal Senior Researcher at the University of Vigo (2000-2004), as a Ramón y Cajal Senior Researcher at Rovira i Virgili University (2004-2008) and as an Ikerbasque Research Professor (2009-2019). She has also worked as an Invited Researcher at the Institute from Environmental Biotechnology, Graz University of Technology (Austria) and at the Department of Biological Engineering, University of Minho (Portugal). In 2008, she received the I3 Professor from the Spanish Ministry of Science and Education to the recognition of an outstanding research activity. She has published more than 140 articles in highly reputed international journals (h index 42). She is editor of several journals (3Biotech, Frontiers) and 14 Elsevier books.

    Innehållsförteckning

    • 1. Strategic approach for characterization of bacterial community in enhanced biological phosphate removal process2. Removal of pollutants from wastewater via biological method and shift in microbial community profile during treatment process3. Nitrogen removal bacterial communities characteristics and dynamics at lab scale reactors 4. Role of the microbial community in the anaerobic digester for biomethane production5. Microbial diversity, interactions and biodegradation of hazardous textile wastewater using biological consortium technology 6. An overview of theoretical and experimental approach to study environmental microflora7. Microbial diversity, interactions and biodegradation of organic and inorganic contaminants8. Metagenomics- A field revealing the secrets into microbial world of waste water treatment plants.9. Metagenomics: a powerful lens viewing the microbial world10. Environmental Parameters Affecting Anaerobic Microbial Community11. Molecular techniques used to identify perfluorooctanoic acid degrading bacteria/ microbes and their applications in wastewater treatment reactor/plant12. Enhanced biological phosphate removal process for wastewater treatment: a sustainable approach13. Modelling microbial communities: Consensual among experimentalist and theorist14. Metagenomics: a powerful lens viewing the microbial world15. Microbial diversity, interactions and Biodegradation/Biotransformation of organic and inorganic contaminants16. Microbial community diversity in a waste water treatment plant17. Molecular Biology Techniques for the Identification of Microbial Community in Waste- Water Treatment Reactors18. Aerobic sludge granulation and enhanced dicamba removal efficiency in the presence of AQS redox mediator in a lab scale anaerobic-aerobic treatment method19. Unraveling microbial complexities via metagenomic approach: Expanding cross-talk for environment management & Prospecting20. Metagenomics: A computational approach in emergence of novel applications21. Microbial Community Analysis of Domestic Wastewater during Blackwater Treatment22. Molecular Biological Techniques used in Environmental Engineering: Current prospects and challenges23. Removal of Heavy Metals by Microbial Communities24. A comprehensive insight into tetracycline resistant bacteria and antibiotic resistance genes in activated sludge using next-generation sequencing25. Bacterial Community Structure, Composition and Their Role in Biological Wastewater Treatment Reactors Plants