Phycoremediation Processes in Industrial Wastewater Treatment
Herausgeber: Shah, Maulin P.
Phycoremediation Processes in Industrial Wastewater Treatment
Herausgeber: Shah, Maulin P.
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In this book, the potential of microalgae in wastewater treatment, their benefits, strategies, and challenges are discussed.
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In this book, the potential of microalgae in wastewater treatment, their benefits, strategies, and challenges are discussed.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Wastewater Treatment and Research
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 180
- Erscheinungstermin: 26. April 2023
- Englisch
- Abmessung: 159mm x 243mm x 16mm
- Gewicht: 454g
- ISBN-13: 9780367760076
- ISBN-10: 036776007X
- Artikelnr.: 67264315
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- 06621 890
- Wastewater Treatment and Research
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 180
- Erscheinungstermin: 26. April 2023
- Englisch
- Abmessung: 159mm x 243mm x 16mm
- Gewicht: 454g
- ISBN-13: 9780367760076
- ISBN-10: 036776007X
- Artikelnr.: 67264315
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- 06621 890
Maulin P. Shah is very interested in genetic adaptation processes in bacteria, the mechanisms by which they deal with toxic substances, how they react to pollution in general and how we can apply microbial processes in a useful way (like bacterial bioreporters). One of his major interests is to study how bacteria evolve and adapt to use organic pollutants as novel growth substrates. Bacteria with new degradation capabilities are often selected in polluted environments and have accumulated small (mutations) and large genetic changes (transpositions, recombination, and horizontally transferred elements). His work has been focused to assess the impact of industrial pollution on microbial diversity of wastewater following cultivation dependant and cultivation independent analysis. He has more than 280 research publication in highly reputed national and international journals. He is Editorial Board Member in CLEAN-Soil, Air, Water- Wiley, Current Pollution Reports- Springer Nature, Environmental Technology & Innovation-Elsevier, Journal of Biotechnology & Biotechnological Equipment-Taylor & Francis, Current Microbiology- Springer Nature, Eco toxicology (Microbial Eco toxicology)-Springer Nature, Geo Microbiology- Taylor & Francis , Applied Water Science - Springer Nature, Archives of Microbiology-Springer, Journal of Applied Microbiology-Wiley, Letters in Applied Microbiology-Wiley, Green Technology, Resilience and Sustainability-Springer, Biomass Conversion & Bio refinery-Springer, Journal of Basic Microbiology-Wiley, Energy Nexus-Elsevier, e Prime - Elsevier, IET Nano biotechnology-Wiley, Cleaner and Circular Bioeconomy - Elsevier, International Microbiology - Springer has edited 75 books in wastewater microbiology, industrial wastewater treatment. He has edited 20 special issues on Industrial Wastewater Treatment & Research theme on highly impact factor journals with Elsevier, Springer, Wiley, Taylor & Francis.
Chapter 1: Addressing the Strategies of Algal Biomass Production with
Wastewater Treatment
Chapter 2: Recent progress of phytoremediation-based Technologies for
industrial wastewater treatment
Chapter 3: Microalgae as Biological cleanser for waste water treatment
Chapter 4: Phycoremediation of Toxic Metals for Industrial Effluent
Treatment
Chapter 5: Algal Biomass Production Coupled to Wastewater Treatment
Chapter 6: Photobioreactor in Waste Water Treatment: Design and Operational
features
Chapter 7: Genetic Engineering of Algae
Chapter 8: Immobilized Micro Algae For Removing Waste Water Pollutants And
Ecotoxicological View Of Adsorbed Nanoparticles - An Overview
Chapter 9: Tailoring Microalgae for Efficient Biofuel Production
Wastewater Treatment
Chapter 2: Recent progress of phytoremediation-based Technologies for
industrial wastewater treatment
Chapter 3: Microalgae as Biological cleanser for waste water treatment
Chapter 4: Phycoremediation of Toxic Metals for Industrial Effluent
Treatment
Chapter 5: Algal Biomass Production Coupled to Wastewater Treatment
Chapter 6: Photobioreactor in Waste Water Treatment: Design and Operational
features
Chapter 7: Genetic Engineering of Algae
Chapter 8: Immobilized Micro Algae For Removing Waste Water Pollutants And
Ecotoxicological View Of Adsorbed Nanoparticles - An Overview
Chapter 9: Tailoring Microalgae for Efficient Biofuel Production
Chapter 1: Addressing the Strategies of Algal Biomass Production with
Wastewater Treatment
Chapter 2: Recent progress of phytoremediation-based Technologies for
industrial wastewater treatment
Chapter 3: Microalgae as Biological cleanser for waste water treatment
Chapter 4: Phycoremediation of Toxic Metals for Industrial Effluent
Treatment
Chapter 5: Algal Biomass Production Coupled to Wastewater Treatment
Chapter 6: Photobioreactor in Waste Water Treatment: Design and Operational
features
Chapter 7: Genetic Engineering of Algae
Chapter 8: Immobilized Micro Algae For Removing Waste Water Pollutants And
Ecotoxicological View Of Adsorbed Nanoparticles - An Overview
Chapter 9: Tailoring Microalgae for Efficient Biofuel Production
Wastewater Treatment
Chapter 2: Recent progress of phytoremediation-based Technologies for
industrial wastewater treatment
Chapter 3: Microalgae as Biological cleanser for waste water treatment
Chapter 4: Phycoremediation of Toxic Metals for Industrial Effluent
Treatment
Chapter 5: Algal Biomass Production Coupled to Wastewater Treatment
Chapter 6: Photobioreactor in Waste Water Treatment: Design and Operational
features
Chapter 7: Genetic Engineering of Algae
Chapter 8: Immobilized Micro Algae For Removing Waste Water Pollutants And
Ecotoxicological View Of Adsorbed Nanoparticles - An Overview
Chapter 9: Tailoring Microalgae for Efficient Biofuel Production