Photoelectrochemical and Enzymatic Conversion of CO2 into Fuels: A Shift Towards Net Zero Energy Landscape: Emerging Technologies and Materials in Thermal Engineering
Editat de Rohit Srivastava, Bishnu Bastakotien Limba Engleză Paperback – aug 2025
This will be a welcomed resource for researchers, students, academicians, engineers, and environmental experts and agencies studying the effects and benefits of the conversion of carbon dioxide into fuels for sustainable and renewable energy.
- Delivers a wealth of knowledge on cutting-edge technologies using low-cost abundant catalysts for photoelectrochemical reduction of CO2
- Focuses on the design and development of novel catalysts for electrochemical, photochemical, enzymatic, and artificial photosynthesis approaches for CO2 reduction into green fuel and value-added chemicals
- Addresses major challenges and issues for greenhouse gases emission worldwide
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Specificații
ISBN-13: 9780443292859
ISBN-10: 044329285X
Pagini: 525
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Emerging Technologies and Materials in Thermal Engineering
ISBN-10: 044329285X
Pagini: 525
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Emerging Technologies and Materials in Thermal Engineering
Cuprins
1. Introduction
2. Electrochemical reduction of CO2
3. Photochemical reduction of CO2
4. Enzymatic reduction of CO2
5. Artificial photosynthesis: Sunlight, Water and CO2 into fuels
6. Advance pervoskite-based catalysis for CO2 conversion
7. Phosphorene based catalyst for CO2 conversion
8. Polymer based-catalyst for CO2 conversion.
9. Transition metal-based single atom catalyst for CO2 conversion
10. Blue-titania catalyst for CO2 conversion
11. Advance carbon-based nanomaterial for CO2 conversion
12. Mxene-Transition metal compound sulphide and phosphide; hetero nanostructures for CO2 conversion
13. Semiconductors materials for CO2 conversion
14. Photobiological CO2 reduction: Introduction and fundamental concept
15. Technoeconomic analysis of electrochemical and photoelectrochemical reduction of CO2
16. Scalability aspects and real-world implementation of electrochemical and photoelectrochemical processes for CO2 reduction
2. Electrochemical reduction of CO2
3. Photochemical reduction of CO2
4. Enzymatic reduction of CO2
5. Artificial photosynthesis: Sunlight, Water and CO2 into fuels
6. Advance pervoskite-based catalysis for CO2 conversion
7. Phosphorene based catalyst for CO2 conversion
8. Polymer based-catalyst for CO2 conversion.
9. Transition metal-based single atom catalyst for CO2 conversion
10. Blue-titania catalyst for CO2 conversion
11. Advance carbon-based nanomaterial for CO2 conversion
12. Mxene-Transition metal compound sulphide and phosphide; hetero nanostructures for CO2 conversion
13. Semiconductors materials for CO2 conversion
14. Photobiological CO2 reduction: Introduction and fundamental concept
15. Technoeconomic analysis of electrochemical and photoelectrochemical reduction of CO2
16. Scalability aspects and real-world implementation of electrochemical and photoelectrochemical processes for CO2 reduction