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Advances in Carbon Capture

Methods, Technologies and Applications

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Paperback, blz. | Engels
Elsevier Science | e druk, 2020
ISBN13: 9780128196571
Rubricering
Elsevier Science e druk, 2020 9780128196571
Verwachte levertijd ongeveer 8 werkdagen

Samenvatting

Advances in Carbon Capture reviews major implementations of CO2 capture, including absorption, adsorption, permeation and biological techniques. For each approach, key benefits and drawbacks of separation methods and technologies, perspectives on CO2 reuse and conversion, and pathways for future CO2 capture research are explored in depth. The work presents a comprehensive comparison of capture technologies. In addition, the alternatives for CO2 separation from various feeds are investigated based on process economics, flexibility, industrial aspects, purification level and environmental viewpoints.

Specificaties

ISBN13:9780128196571
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Section I: Introduction to CO2 Capture<br>1. CO2 emission sources, greenhouse gases and global warming effect<br>2. Challenges on CO2 capture, reuse and conversion</p> <p>Section II: Absorption Techniques and Methods for CO2 Capture<br>3. CO2 absorption by common solvents<br>4. CO2 absorption by ionic liquids and deep eutectic solvents<br>5. CO2 capture by solvents modified with nanoparticles<br>6. Encapsulated liquid sorbents for CO2 Capture<br>7. CO2 capture by Lewis acids and amino acid salts<br>8. Advances in gas-liquid contactors for carbon capture and challenges in industrialization: packed bed, rotating packed bed, mini and microchannels</p> <p>Section III: Adsorption Techniques for CO2 Capture<br>9. CO2 adsorption by carbonaceous materials and nanomaterials<br>10. CO2 adsorption by conventional and nano-sized zeolites<br>11. Application of metals, pseudo metals and metal-organic framework (MOF) for capturing CO2<br>12. CO2 adsorption by functionalized sorbents<br>13. Advances in CO2 adsorption in swing technologies and challenge on industrialization<br>14. Phase-change absorption and Processes for CO2 Capture</p> <p>Section IV: CO2 Capture by Membrane Separation<br>15. CO2 separation with ionic liquid membranes<br>16. Zeolite and Alumina based membranes for CO2 capture<br>17. Polymeric membranes for CO2 separation<br>18. An Overview of Gas-Liquid Hollow Fiber Polymeric Membrane Contactor for CO2 Absorption-Stripping<br>19. MOF mixed matrix membranes for CO2 separation<br>20. Challenges on industrialization of CO2 Capture by Membrane</p> <p>Section V: Biological techniques for CO2 capture<br>21. CO2 capture using microalgae<br>22. CO2 capture using enzymes<br>23. CO2 capture using bacteria<br>24. Challenges on industrialization of biotechnological CO2 capturing techniques</p> <p>Section VI: Applications of CO2 Capture<br>25. CO2 removal from biogas and syngas<br>26. CO2 removal from natural gas<br>27. Integration of CO2 capture and conversion<br>28. CO2 removal from flue gas<br>29. CO2 removal from air</p>

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        Advances in Carbon Capture