Clean Energy and Resources Recovery
Elsevier - Health Sciences Division (Verlag)
978-0-323-85223-4 (ISBN)
Case studies on upscaling technology and pilot and industry scale implementation are included, alongside step-by-step calculations that integrate practical field data and regulatory requirements into the environmental design process. Finally, future trends and developments in advanced biotechnological concepts for biomass waste processing and management are also discussed.
Dr. Vinay Kumar Tyagi is a Scientist D in the Environmental Hydrology Division of the National Institute of Hydrology, Roorkee, India. His research interests include energy-efficient wastewater treatment systems, sludge and solid waste management, and health related water microbiology. Dr. Tyagi has over 100 international publications, with more than 8,000 citations, as well as co-editing or co-authoring 8 full books and 42 book chapters. He was listed in the Top 2% of Scientists worldwide (Stanford University / Elsevier). Dr. Tyagi is Management Committee Member of the International Water Association (IWA) Sludge Management Specialist Group (represent South Asia Division), and Anaerobic Digestion Specialist Group. He is an editorial board member for several international journals and a lead editor of several special issues. Dr. Tyagi has extensive international research experience and collaboration in Norway, Japan, Singapore, Spain, and Taiwan in the domains of wastewater treatment, sludge pre-treatment, and biomass to bioenergy recovery. Dr. Kaoutar Aboudi is a substitute lecturer in the Department of Chemical Engineering and Food Technology at the University of Cádiz (Spain), where she is a senior researcher in the Applied Bioprocess Engineering research group. Her central research areas include biomass to bioenergy and value-added product recovery through anaerobic digestion and fermentation processes. She has been working on technologies related to biohythane production for 15 years. Dr. Aboudi has co-edited 2 full books and has co-authored 12 book chapters and 20 peer-reviewed papers published in recognized journals. She has participated in over 19 international conferences worldwide and has been a member of several research projects related to biomass valorization. She previously completed postdoctoral research at the IMDEA-Energy Institute in Madrid (Spain) and international internships at Delft University of Technology (the Netherlands) and the New University of Lisbon (Portugal). She has successfully supervised BSc degree students in Chemical Engineering and Biotechnology.
1. State of the art of energy production from agricultural residues using thermochemical and biological processes
2. Valorising agricultural residues as biorefinery feedstocks: current advancements and challenges
3. Status and perspectives of agricultural residues in a circular and resource efficient context
4. Anaerobic co-digestion with fruit and vegetable wastes: An opportunity to enhance the sustainability and circular economy of the WWTP digesters
5. Self-Sustainability of Anaerobic Digestion for Conversion of Water Hyacinth into Value Added Bio-Fuels
6. Production of High Value-Added Amino Acids and Biofuels (H2&CH4) from Gelatinous Industry Wastewater Via Anaerobic Bio-Degradation Process
7. Bio-methanization of agricultural lignocellulosic wastes: Pretreatments
8. Occurrence and Fate of Recalcitrant in Anaerobic Treatment of Wastewater and Organic
9. Direct interspecies electron transfer (DIET) via conductive materials in anaerobic digestion of organic wastes
10. Anaerobic digestion of bioplastics
11. Kinetics models of Methane production from anaerobic digestion
12. Using Black Soldier Fly for Waste Management in Developing Countries
13. Resource recovery and circular economy approach in organic waste management using hydrothermal carbonization
14. Resource recovery from food waste via biological processes
15. Integral valorization of residual biomass: Hydrogen, polyhydroxyalkanoates, and compost production
16. Thermal hydrolysis sludge pre-treatment
17. Sustainable bio-waste recycling using insects
18. Butanol production from algal biomass by ABE fermentation proces
19. Polyhydroxyalkanoates production from algal biomass
20. Use of membrane technologies to recover microalgae biomass produced in wastewater
21. Black soldier fly biorefinery: A novel upcycling route for municipal biosolids
| Erscheinungsdatum | 20.08.2021 |
|---|---|
| Zusatzinfo | Approx. 100 illustrations; Illustrations |
| Verlagsort | Philadelphia |
| Sprache | englisch |
| Maße | 191 x 235 mm |
| Gewicht | 1090 g |
| Themenwelt | Technik ► Elektrotechnik / Energietechnik |
| ISBN-10 | 0-323-85223-8 / 0323852238 |
| ISBN-13 | 978-0-323-85223-4 / 9780323852234 |
| Zustand | Neuware |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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