Waste Biorefinery: Integrating Biorefineries for Waste Valorisation
Editat de Thallada Bhaskar, Ashok Pandey, Eldon R. Rene, Daniel C.W. Tsangen Limba Engleză Paperback – 18 mar 2020
The book presents an assortment of case-studies from developing and developed countries pertaining to the use of sustainable technologies for energy recovery from different waste matrices. Advantages and limitations of different technologies are also discussed by considering the local energy demands, government policies, environmental impacts, and education in bioenergy.
- Provides information on the most advanced and innovative processes for biomass conversion
- Covers information on biochemical and thermo-chemical processes and products development on the principles of biorefinery
- Includes information on the integration of processes and technologies for the production of biofuels, energy products and biochemicals
- Demonstrates the application of various processes with proven case studies
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Specificații
ISBN-13: 9780128182284
ISBN-10: 0128182288
Pagini: 756
Dimensiuni: 191 x 235 mm
Greutate: 1.28 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128182288
Pagini: 756
Dimensiuni: 191 x 235 mm
Greutate: 1.28 kg
Editura: ELSEVIER SCIENCE
Public țintă
Chemists, chemical engineers, biochemical engineers, microbiologists, biotechnologists working in academic institutes, research institutes, industries, policy experts and governmental agenciesCuprins
I General 1. Waste carbon resources for waste biorefinery: strategies for sustainable recycling 2. Sustainable development goals (SDGs) and role of waste biorefinery 3. Energy and Environment 4. Advances in Conversion processes for complex feeds/streams
II Integrated Biorefineries/Waste Valorization 5. Food waste biorefinery 6. Case study: Food waste biorefinery 7. Case study: Edible crop biorefinery 8. Municipal solid waste biorefinery 9. Case studies for MSW biorefinery 10. Sewage sludge biorefinery 11. Case study of sewage sludge biorefinery 12. Pulp and Paper biorefinery 13. Aquatic biorefinery: Azolla, water hyacinth
III Associated studies 14. Biorefinery emissions (e.g., Greenhouse gases, LUC, ILUC, LCS, etc.) 15. Techno-economic studies 16. Life-Cycle Analysis: Present status and challenges 17. Footprints (e.g., Carbon and water, etc.) 18. Balances (e.g., Energy and exergy, etc.) 19. Supply chain optimization
II Integrated Biorefineries/Waste Valorization 5. Food waste biorefinery 6. Case study: Food waste biorefinery 7. Case study: Edible crop biorefinery 8. Municipal solid waste biorefinery 9. Case studies for MSW biorefinery 10. Sewage sludge biorefinery 11. Case study of sewage sludge biorefinery 12. Pulp and Paper biorefinery 13. Aquatic biorefinery: Azolla, water hyacinth
III Associated studies 14. Biorefinery emissions (e.g., Greenhouse gases, LUC, ILUC, LCS, etc.) 15. Techno-economic studies 16. Life-Cycle Analysis: Present status and challenges 17. Footprints (e.g., Carbon and water, etc.) 18. Balances (e.g., Energy and exergy, etc.) 19. Supply chain optimization