Particulate Matter Formation and Alkali and Alkaline Earth Metal Partitioning in a Pressurized Oxy-fuel Fluidized-Bed Combustor

Author:

Duan Lunbo1ORCID,Wang Jia1,Qiu Xinglei1,Wang Yueming2ORCID,Wendt Jost3ORCID,Zhao Changsui1

Affiliation:

1. Key Laboratory of Energy Thermal Conversion and Control, Ministry of Education, School of Energy and Environment, Southeast University, Nanjing, Jiangsu 210096, People’s Republic of China

2. Southern Research, National Carbon Capture Center (NCCC), 31800 Highway 25 North, Wilsonville, Alabama 35186, United States

3. Department of Chemical Engineering and Institute for Clean and Secure Energy, University of Utah, 50 South Central Campus Drive, Salt Lake City, Utah 84112, United States

Funder

National Natural Science Foundation of China

Publisher

American Chemical Society (ACS)

Subject

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

Reference46 articles.

1. Innovation and greenhouse gas reductions in the Canadian energy industry

2. Analysis of oxy-fuel combustion power cycle utilizing a pressurized coal combustor

3. Benelli, G.; Girardi, G.; Malavasi, M.; Saponaro, A. ISOTHERM®: A new oxy-combustion process to match the zero emission challenge in power generation. Proceedings of the 7th High Temperature Air Combustion and Gasification International Symposium; Phuket, Thailand, Jan 14–16, 2008.

4. Benelli, G.; Malavasi, M.; Girardi, G. Innovative oxy-coal combustion process suitable for future and more efficient zero emission power plants. Proceedings of the Power-Gen Europe Conference and Exhibition; Milan, Italy, June 3–5, 2008.

5. Benelli, G.; Cumbo, D.; Gazzino, M.; Morgani, E. Pressurized oxy-coal combustion with flue gas recirculation pilot scale demonstration. Proceedings of the Power-Gen Europe Conference and Exhibition; Milan, Italy, June 3–5, 2008.

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