Initial evaluation of the impact of post-combustion capture of carbon dioxide on supercritical pulverised coal power plant part load performance

Author:

Chalmers Hannah,Gibbins Jon

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference11 articles.

1. IEA Greenhouse Gas R&D Programme (IEAGHG). CO2 capture as a factor in power station investment decisions. Report 2006/8. IEAGHG; 2006. www.ieagreen.org.uk.

2. Chalmers H, Gibbins J. Potential for synergy between renewables and carbon capture and storage. In: Proceedings of the 29th international association of energy economics international conference. Potsdam, Germany, June 2006.

3. IEA Greenhouse Gas R&D Programme (IEAGHG). Improvement in power generation with post-combustion capture of CO2. Report PH4/33. IEAGHG; 2004. www.ieagreen.org.uk.

4. IEA Greenhouse Gas R&D Programme (IEAGHG). International network for CO2 capture: report on ninth workshop. Report 2006/11. IEAGHG; 2006. www.ieagreen.org.uk.

5. Gibbins JR, Crane RI, Lambropoulos D, Booth C, Roberts CA, Lord, M. Maximising the effectiveness of post-combustion CO2 capture systems. In: Proceedings of the seventh international conference on greenhouse gas control technologies, vol.1. Vancouver, Canada, September 2004.

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