3rd Generation Biofuels: Disruptive Technologies to Enable Commercial Production: Woodhead Publishing Series in Energy
Editat de Eduardo Jacob-Lopes, Leila Queiroz Zepka, Ihana Aguiar Severo, Mariana Manzoni Maronezeen Limba Engleză Paperback – 6 iun 2022
The book provides readers with an invaluable reference for researchers, graduates, and practitioners working in the areas of renewable energy, bioenergy and alternative fuels, and biotechnology.
- Offers a sequential framework for the design of process plants using 3rd generation feedstock
- Presents dedicated sections on case studies at pilot and demonstration scales as well as on policy, economic, and environmental issues
- Provides a global perspective on biofuels production, with more than 40 contributions from world-renouned experts
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Specificații
ISBN-13: 9780323909716
ISBN-10: 032390971X
Pagini: 1164
Ilustrații: 220 illustrations (60 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 1.52 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Energy
ISBN-10: 032390971X
Pagini: 1164
Ilustrații: 220 illustrations (60 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 1.52 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Energy
Public țintă
Researchers and postgraduates working in that areas of Renewable Energy, Bioenergy and alternative fuels, and BiotechnologyUndergraduate and Postgraduate students in Biology, Life Sciences, and Engineering
Cuprins
Part I – Fundamentals
1. The choice of algae strain for the biofuel production: Native, genetically modified or microbial consortia
2. Criteria for the development of culture media applied to microalgae-based fuels production
3. Genome editing approaches applied to microalgae-based fuels
4. Biochemical engineering approaches to enhance production of microalgae-based fuels
Part II – From upstream to downstream processing
5. Impact of culture conditions on the microalgae-based fuels production
6. Strategies for process control applied to microalgae-based fuels production
7. Carbon dioxide capture and use to produce microalgae-based fuels
8. Wastewater, reclaimed water, and seawater in the production of microalga-based fuels
9. Unit operations applied to solid-liquid separation in microalgae-based processes
10. Unit operations applied to dry of microalgal biomass
11. Unit operations applied to cell disruption of microalgae
12. Process integration approaches applied to microalgal biofuels production
13. Process intensification techniques applied to microalgal biofuels production
14. Biofuels and chemicals from microalgae
15. Biorefinery of the microalgae-based products
16. Topology analysis of the 3rd generation biofuels
17. Nanotechnology approaches to enhance the development of biofuels from microalgae
18. Waste-to-energy approaches applied to microalgae-based systems
Part III – Microalgae-based energy products
19. Biodiesel from microalgae
20. Bioethanol from microalgae
21. Biomethane from microalgae
22. Biohydrogen from microalgae
23. Biobutanol from microalgae
24. Syngas from microalgae
25. Volatile organic compounds from microalgae
26. Biochar from microalgae
27. Production of renewable aviation fuel from microalgae
28. Direct combustion of microalgae biomass to generate bioelectricity
29. Microalgae-microbial fuel cells
Part IV – Policy, regulatory, economic, intellectual property, and environmental aspects
30. Energy policies in the context of the third-generation biofuels
31. Global profile and market potentials of the 3rd generation biofuels
32. Third-generation biofuels and food security
33. Bioeconomy of microalgae-based fuels
34. Cost-benefit analysis of third-generation biofuels
35. Environmental indicators of the microalgae-based fuels
36. Exergy analysis of the third-generation biofuels
37. Intellectual property and innovation in the context of the 3rd generation biofuels
38. Socio-economic aspects of the 3rd generation biofuels
39. Social acceptance of 3rd generation biofuels
Part V – Pilot projects and demonstration-scale: Case studies for biofuels production
40. Production of microalgae on source separated human urine
41. Practical guide to algal biomass production for biofuels and what can we learn from past successes and failures?
42. Challenges for microalgae cultivation in sugarcane processing wastewater (vinasse) for biodiesel production: from the bench to pilot-scale
43. The experiences of success and failure in the hybrid photobioreactors
44. The experiences of success and failure in the pilot and real scale photosynthetic biogas production
45. Best practices for bio-crude oil production at pilot-scale using continuous flow reactors
1. The choice of algae strain for the biofuel production: Native, genetically modified or microbial consortia
2. Criteria for the development of culture media applied to microalgae-based fuels production
3. Genome editing approaches applied to microalgae-based fuels
4. Biochemical engineering approaches to enhance production of microalgae-based fuels
Part II – From upstream to downstream processing
5. Impact of culture conditions on the microalgae-based fuels production
6. Strategies for process control applied to microalgae-based fuels production
7. Carbon dioxide capture and use to produce microalgae-based fuels
8. Wastewater, reclaimed water, and seawater in the production of microalga-based fuels
9. Unit operations applied to solid-liquid separation in microalgae-based processes
10. Unit operations applied to dry of microalgal biomass
11. Unit operations applied to cell disruption of microalgae
12. Process integration approaches applied to microalgal biofuels production
13. Process intensification techniques applied to microalgal biofuels production
14. Biofuels and chemicals from microalgae
15. Biorefinery of the microalgae-based products
16. Topology analysis of the 3rd generation biofuels
17. Nanotechnology approaches to enhance the development of biofuels from microalgae
18. Waste-to-energy approaches applied to microalgae-based systems
Part III – Microalgae-based energy products
19. Biodiesel from microalgae
20. Bioethanol from microalgae
21. Biomethane from microalgae
22. Biohydrogen from microalgae
23. Biobutanol from microalgae
24. Syngas from microalgae
25. Volatile organic compounds from microalgae
26. Biochar from microalgae
27. Production of renewable aviation fuel from microalgae
28. Direct combustion of microalgae biomass to generate bioelectricity
29. Microalgae-microbial fuel cells
Part IV – Policy, regulatory, economic, intellectual property, and environmental aspects
30. Energy policies in the context of the third-generation biofuels
31. Global profile and market potentials of the 3rd generation biofuels
32. Third-generation biofuels and food security
33. Bioeconomy of microalgae-based fuels
34. Cost-benefit analysis of third-generation biofuels
35. Environmental indicators of the microalgae-based fuels
36. Exergy analysis of the third-generation biofuels
37. Intellectual property and innovation in the context of the 3rd generation biofuels
38. Socio-economic aspects of the 3rd generation biofuels
39. Social acceptance of 3rd generation biofuels
Part V – Pilot projects and demonstration-scale: Case studies for biofuels production
40. Production of microalgae on source separated human urine
41. Practical guide to algal biomass production for biofuels and what can we learn from past successes and failures?
42. Challenges for microalgae cultivation in sugarcane processing wastewater (vinasse) for biodiesel production: from the bench to pilot-scale
43. The experiences of success and failure in the hybrid photobioreactors
44. The experiences of success and failure in the pilot and real scale photosynthetic biogas production
45. Best practices for bio-crude oil production at pilot-scale using continuous flow reactors