Absorption-Based Post-Combustion Capture of Carbon Dioxide

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Informationen zum Autor With a globally recognised reputation for science excellence in carbon capture technology, Dr Paul Feron leads CSIRO's post-combustion CO2 capture research program, developing new cost-effective, environmentally-benign technologies to reduce atmospheric emissions from coal-fired power. As one of the pioneers of carbon capture research Dr Feron has been working in the field from the early 1990s, and has made a large contribution to both the technology and international policy of the research.

Autorentext
With a globally recognised reputation for science excellence in carbon capture technology, Dr Paul Feron leads CSIRO's post-combustion CO2 capture research program, developing new cost-effective, environmentally-benign technologies to reduce atmospheric emissions from coal-fired power. As one of the pioneers of carbon capture research Dr Feron has been working in the field from the early 1990s, and has made a large contribution to both the technology and international policy of the research.

Inhalt

Part 1 Introductory issues
1. Introduction/overview

  1. The fundamentals of post-combustion capture
  2. Conventional amine scrubbing for CO2 capture

  3. Liquid absorbent selection criteria and screening procedures

    Part 2 Capture agents

  4. Precipitating amino acid solutions
  5. Aminosilicone systems for post-combustion CO2 capture
  6. Inorganic salt solutions for post-combustion capture
  7. Mixed salt solutions for CO2 capture
  8. Dual liquid phase systems
  9. Enzyme-enhanced CO2 absorption
  10. Ionic liquids for PCC

  11. Aqueous ammonia-based post-combustion CO2 capture

    Part 3 Process design

  12. Process modifications for CO2 capture
  13. Gas-liquid contactors in liquid absorbent-based PCC
  14. Hybrid amine-based PCC processes, membrane contactors for PCC

    Part 4 Solvent degradation, emissions and waste handling
    16. Degradation of amine-based solvents

  15. Reclaiming of amine-based liquids used in PCC
  16. Assessment of corrosion in liquid absorbent-based PCC systems
  17. Overview of aerosols in post-combustion CO2 capture
  18. Emissions from amine-based post-combustion CO2 capture plants
  19. Waste handling in liquid absorbent-based PCC processes

  20. Treatment of flue-gas impurities for liquie absorbent-based post-combustion CO2capture processes

    Part 5 Process integration and operation
    23. Power plant integration methods for liquid absorbent-based PCC

  21. Dynamic operation of liquid absorbent-based PCC plants
  22. Renewable energy integration in liquid absorbent-based PCC plants
  23. Pilot plant operation for liquid absorbent-based PCC
  24. Techno-economics of liquid absorbent-based PCC processes
  25. Liquid absorbent-based PCC in industrial processes
  26. Commercial liquid absorbent-based PCC processes

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09780081005149
    • Genre Thermal Engineering
    • Editor Feron Paul
    • Anzahl Seiten 814
    • Herausgeber Elsevier Science & Technology
    • Gewicht 1390g
    • Größe H229mm x B152mm x T60mm
    • Jahr 2016
    • EAN 9780081005149
    • Format Fester Einband
    • ISBN 978-0-08-100514-9
    • Veröffentlichung 16.06.2016
    • Titel Absorption-Based Post-Combustion Capture of Carbon Dioxide
    • Autor Paul (Csiro, Australia) Feron
    • Sprache Englisch

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