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Integrated Gasification Combined Cycle (IGCC) Technologies

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2016
ISBN13: 9780081001677
Rubricering
Juridisch :
Elsevier Science e druk, 2016 9780081001677
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Samenvatting

Integrated Gasification Combined Cycle (IGCC) Technologies discusses this innovative power generation technology that combines modern coal gasification technology with both gas turbine and steam turbine power generation, an important emerging technology which has the potential to significantly improve the efficiencies and emissions of coal power plants.

The advantages of this technology over conventional pulverized coal power plants include fuel flexibility, greater efficiencies, and very low pollutant emissions. The book reviews the current status and future developments of key technologies involved in IGCC plants and how they can be integrated to maximize efficiency and reduce the cost of electricity generation in a carbon-constrained world.

The first part of this book introduces the principles of IGCC systems and the fuel types for use in IGCC systems. The second part covers syngas production within IGCC systems. The third part looks at syngas cleaning, the separation of CO2 and hydrogen enrichment, with final sections describing the gas turbine combined cycle and presenting several case studies of existing IGCC plants.

Specificaties

ISBN13:9780081001677
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>1. An overview of IGCC systems</p> <p>Part I: Fuel types for use in IGCC systems<br>2. Utilization of coal in IGCC systems<br>3. Petroleum coke (petcoke) and refinery residues<br>4. Biomass feedstock for IGCC systems<br>5. Municipal wastes and other potential fuels for use in IGCC systems</p> <p>Part II: Syngas production and cooling<br>6. Gasification fundamentals<br>7. Effect of coal nature on the gasification process<br>8. Major gasifiers for IGCC systems<br>9. Syngas cooling in IGCC systems</p> <p>Part III: Syngas cleaning, separation of CO2 and hydrogen enrichment<br>10. Wet scrubbing and gas filtration of syngas in IGCC systems<br>11. Acid gas removal from syngas in IGCC plants<br>12. Hydrogen production in IGCC systems<br>13. Integration of carbon capture in IGCC systems<br>14. By-products from the integrated gas combined cycle in IGCC systems</p> <p>Part IV: The combined cycle power island and IGCC system simulations<br>15. The gas and steam turbines and combined cycle in IGCC systems</p> <p>Part V: Case studies of existing IGCC plants<br>16. A simulated IGCC case study without CCS<br>17. Dynamic IGCC system simulator<br>18. Case study: Wabash River Coal Gasification Repowering Project, USA<br>19. Case study: Nuon–Buggenum, The Netherlands<br>20. Case Study: ELCOGAS Puertollano IGCC power plant, Spain<br>21. Case study: Sarlux IGCC power plant, Italy<br>22. Case study: Nakoso IGCC power plant, Japan<br>23. Case study: Kemper County IGCC project, USA<br>24. Improvement opportunities for IGCC<br>25. The current status and future prospects for IGCC systems</p>

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        Integrated Gasification Combined Cycle (IGCC) Technologies