Material-Microbes Interactions: Environmental Biotechnological Perspective: Developments in Applied Microbiology and Biotechnology
Editat de Nabin Aryal, Yifeng Zhang, Sunil A. Patil, Deepak Panten Limba Engleză Paperback – 22 iun 2023
Interestingly, academic institutions, wastewater treatment plants and research centers have upscaled biofilm-based environmental technologies, such as moving bed bioreactors, microalgae, tricking bed reactors, biofilters, and bioelectrochemical process as promising environmental technologies.
- Illustrates growing interest in biofilm-based technology development, either wastewater treatment using carrier materials or valorizing waste material into resources using biofilm-based bioprocess
- Focuses explicitly on the microbes-material interactions in various biotechnologies
- Covers a broad range of biofilm-based bioprocesses, including new and state-of-the-art options and trends within the field
- Includes photo-sets on biofilm development and bioreactor systems
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Specificații
ISBN-13: 9780323951241
ISBN-10: 0323951244
Pagini: 516
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Seria Developments in Applied Microbiology and Biotechnology
ISBN-10: 0323951244
Pagini: 516
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Seria Developments in Applied Microbiology and Biotechnology
Public țintă
Researchers, Scientists, Microbiologists, Medical practitioners, Medical students, Biotechnologists, Bacteriologists and others in the field of infectious diseases,industry professionals throughout the globe who aspire to work on the pathogen biology
Cuprins
A. Fundamentals and Advances
1. Environmental Microbial Biofilms: Formation, characteristics, and biotechnological applications
2. Microbes-material interactions for direct inter-species electron transfer in anaerobic digestion
3. Electron transfer processes between microbes and electrodes in bioelectrochemical reactors
4. Wastewater granules: material-microbe formation and arrangement lead to blurry boundaries between aerobic and anaerobic metabolism and greenhouse gas emissions
5. Recent progress in antibacterial membranes for water treatment
B. Specific applications
6. Role of electrode engineering in microbial electrochemical technologies for bioelectricity and biohydrogen production
7. The development of cathode materials for boosting the CO2 conversion in microbial electrosynthesis cells
8. Spatial surface modification of cathode materials in microbial electrosynthesis of chemicals from carbon dioxide
9. Material–microbe interaction for solar power-driven biochemical synthesis
10. Methanogens-electrode interaction for methane production from carbon dioxide
11. Enhanced anaerobic digestion by hydrochar for efficient biogas production
12. Harnessing microbes-material interfaces for micropollutants removal from different media
13. Constructed wetlands for wastewater management
14. Chemical activation of biochar supported metal oxides for degradation of organic/inorganic and microbial contaminants
15. Pathogens electrogenicity as a tool for in-situ metabolic activity monitoring and drug assessment in biofilms
16. Biomass gasification and biological system for cleaning syngas from gasifiers
C. Technology scale-up and sustainability
17. Techno-economic implications and life cycle assessment of MFC and MEC
18. Moving bed biofilm bioreactor (MBBR) for wastewater treatment: Techno-economic/sustainability aspects and recent trends
19. Granular and moving bed bioreactor based wastewater treatment plant: An industrial perspective
1. Environmental Microbial Biofilms: Formation, characteristics, and biotechnological applications
2. Microbes-material interactions for direct inter-species electron transfer in anaerobic digestion
3. Electron transfer processes between microbes and electrodes in bioelectrochemical reactors
4. Wastewater granules: material-microbe formation and arrangement lead to blurry boundaries between aerobic and anaerobic metabolism and greenhouse gas emissions
5. Recent progress in antibacterial membranes for water treatment
B. Specific applications
6. Role of electrode engineering in microbial electrochemical technologies for bioelectricity and biohydrogen production
7. The development of cathode materials for boosting the CO2 conversion in microbial electrosynthesis cells
8. Spatial surface modification of cathode materials in microbial electrosynthesis of chemicals from carbon dioxide
9. Material–microbe interaction for solar power-driven biochemical synthesis
10. Methanogens-electrode interaction for methane production from carbon dioxide
11. Enhanced anaerobic digestion by hydrochar for efficient biogas production
12. Harnessing microbes-material interfaces for micropollutants removal from different media
13. Constructed wetlands for wastewater management
14. Chemical activation of biochar supported metal oxides for degradation of organic/inorganic and microbial contaminants
15. Pathogens electrogenicity as a tool for in-situ metabolic activity monitoring and drug assessment in biofilms
16. Biomass gasification and biological system for cleaning syngas from gasifiers
C. Technology scale-up and sustainability
17. Techno-economic implications and life cycle assessment of MFC and MEC
18. Moving bed biofilm bioreactor (MBBR) for wastewater treatment: Techno-economic/sustainability aspects and recent trends
19. Granular and moving bed bioreactor based wastewater treatment plant: An industrial perspective