Sustainable Resource Recovery and Zero Waste Approaches
Herausgegeben:Taherzadeh, Mohammad; Bolton, Kim; Wong, Jonathan; Pandey, Ashok
Sustainable Resource Recovery and Zero Waste Approaches
Herausgegeben:Taherzadeh, Mohammad; Bolton, Kim; Wong, Jonathan; Pandey, Ashok
- Broschiertes Buch
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
Sustainable Resource Recovery and Zero Waste Approaches covers waste reduction, biological, thermal and recycling methods of waste recovery, and their conversion into a variety of products. In addition, the social, economic and environmental aspects are also explored, making this a useful textbook for environmental courses and a reference book for both universities and companies.
Andere Kunden interessierten sich auch für
Advances in Eco-Fuels for a Sustainable Environment159,99 €
Concepts of Advanced Zero Waste Tools100,99 €
Zhao YoucaiPollution Control and Resource Reuse for Alkaline Hydrometallurgy of Amphoteric Metal Hazardous Wastes76,99 €
Algae-Based Biomaterials for Sustainable Development152,99 €
Microbial Electrochemical and Fuel Cells144,99 €
Fluidized Bed Technologies for Near-Zero Emission Combustion and Gasification236,99 €
Adel EL-HadidyAI-Powered Zero Waste Revolution53,99 €-
-
-
Sustainable Resource Recovery and Zero Waste Approaches covers waste reduction, biological, thermal and recycling methods of waste recovery, and their conversion into a variety of products. In addition, the social, economic and environmental aspects are also explored, making this a useful textbook for environmental courses and a reference book for both universities and companies.
Produktdetails
- Produktdetails
- Verlag: Elsevier / Elsevier Science & Technology
- Artikelnr. des Verlages: C2017-0-04415-4
- Englisch
- Abmessung: 234mm x 191mm x 235mm
- Gewicht: 640g
- ISBN-13: 9780444642004
- Artikelnr.: 55347483
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
- Verlag: Elsevier / Elsevier Science & Technology
- Artikelnr. des Verlages: C2017-0-04415-4
- Englisch
- Abmessung: 234mm x 191mm x 235mm
- Gewicht: 640g
- ISBN-13: 9780444642004
- Artikelnr.: 55347483
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Mohammad J. Taherzadeh is professor in Biotechnology since 2004 at University of Borås in Sweden. He is also director of Resource Recovery, a research profile with about 50 researchers to convert wastes to energy and value-added products. Prof. Taherzadeh has PhD in Bioscience and MSc and Bsc in Chemical Engineering. He is working on converting wastes and residuals to ethanol, biogas, fish feed and superabsorbents, in which fermentation development using bacteria, yeast and filamentous fungi has a heavy weight. Prof. Taherzadeh has more than 120 publications in scientific peer-reviewed journals, 10 book chapters and two patents about filamentous fungi. Mohammad is the panel chairman of "biotechnology, chemical technology and environmental technology? of Swedish Research Council, and also in the editorial board of Bioresource Technology and BioResources.
Prof. Ashok Pandey is currently Executive Director, Centre for Energy and Environmental Sustainability-India, Lucknow. His major research and technological development interests are industrial and environmental biotechnology and energy biosciences, focusing on biomass to biofuels and chemicals, waste to wealth and energy, etc.
Prof. Ashok Pandey is currently Executive Director, Centre for Energy and Environmental Sustainability-India, Lucknow. His major research and technological development interests are industrial and environmental biotechnology and energy biosciences, focusing on biomass to biofuels and chemicals, waste to wealth and energy, etc.
1. Agricultural, industrial, municipal and forestry wastes: an overview
2. Life cycle assessments of waste management
3. Waste refinery
4. An Overview of Solid Waste Management toward Zero Landfill: A Swedish Model
5. Factors affecting development of waste management
6. Sustainable Management of Solid Waste
7. Laws and Regulations Governing Waste Management: Institutional Arrangements Regarding Waste Management
8. Source Separation of Household Waste: Technology and Social Aspects
9. Composting of Wastes
10. Vermicomposting of wastes
11. Biogas from Wastes: Processes and Applications
12. Combustion of Wastes in Combined Heat and Power Plants
13. Gasification and Pyrolysis of Waste
14. Syngas fermentation for biofuels and biomaterials productions
15. Metal Recycling
16. Material and Energy Recovery from Electrical and Electronic Equipment Waste: Status, Challenges, and Opportunities
17. Recycling of Thermoset Composites and plastics
18. Recycling of Papers and Fibers
19. Product Design for Material Recovery
20. Landfill Mining: On the Potential and Multifaceted Challenges for Implementation
2. Life cycle assessments of waste management
3. Waste refinery
4. An Overview of Solid Waste Management toward Zero Landfill: A Swedish Model
5. Factors affecting development of waste management
6. Sustainable Management of Solid Waste
7. Laws and Regulations Governing Waste Management: Institutional Arrangements Regarding Waste Management
8. Source Separation of Household Waste: Technology and Social Aspects
9. Composting of Wastes
10. Vermicomposting of wastes
11. Biogas from Wastes: Processes and Applications
12. Combustion of Wastes in Combined Heat and Power Plants
13. Gasification and Pyrolysis of Waste
14. Syngas fermentation for biofuels and biomaterials productions
15. Metal Recycling
16. Material and Energy Recovery from Electrical and Electronic Equipment Waste: Status, Challenges, and Opportunities
17. Recycling of Thermoset Composites and plastics
18. Recycling of Papers and Fibers
19. Product Design for Material Recovery
20. Landfill Mining: On the Potential and Multifaceted Challenges for Implementation
1. Agricultural, industrial, municipal and forestry wastes: an overview
2. Life cycle assessments of waste management
3. Waste refinery
4. An Overview of Solid Waste Management toward Zero Landfill: A Swedish Model
5. Factors affecting development of waste management
6. Sustainable Management of Solid Waste
7. Laws and Regulations Governing Waste Management: Institutional Arrangements Regarding Waste Management
8. Source Separation of Household Waste: Technology and Social Aspects
9. Composting of Wastes
10. Vermicomposting of wastes
11. Biogas from Wastes: Processes and Applications
12. Combustion of Wastes in Combined Heat and Power Plants
13. Gasification and Pyrolysis of Waste
14. Syngas fermentation for biofuels and biomaterials productions
15. Metal Recycling
16. Material and Energy Recovery from Electrical and Electronic Equipment Waste: Status, Challenges, and Opportunities
17. Recycling of Thermoset Composites and plastics
18. Recycling of Papers and Fibers
19. Product Design for Material Recovery
20. Landfill Mining: On the Potential and Multifaceted Challenges for Implementation
2. Life cycle assessments of waste management
3. Waste refinery
4. An Overview of Solid Waste Management toward Zero Landfill: A Swedish Model
5. Factors affecting development of waste management
6. Sustainable Management of Solid Waste
7. Laws and Regulations Governing Waste Management: Institutional Arrangements Regarding Waste Management
8. Source Separation of Household Waste: Technology and Social Aspects
9. Composting of Wastes
10. Vermicomposting of wastes
11. Biogas from Wastes: Processes and Applications
12. Combustion of Wastes in Combined Heat and Power Plants
13. Gasification and Pyrolysis of Waste
14. Syngas fermentation for biofuels and biomaterials productions
15. Metal Recycling
16. Material and Energy Recovery from Electrical and Electronic Equipment Waste: Status, Challenges, and Opportunities
17. Recycling of Thermoset Composites and plastics
18. Recycling of Papers and Fibers
19. Product Design for Material Recovery
20. Landfill Mining: On the Potential and Multifaceted Challenges for Implementation







