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Original Articles

THE EFFECT OF RADIAL DISTRIBUTION OF VOIDAGE ON THE BURNING RATE OF A CARBON SPHERE IN A FLUIDIZED BED

Pages 297-308 | Received 30 Jul 1984, Accepted 08 Apr 1985, Published online: 03 Apr 2007

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G. STELL & P.A. RIKVOLD. (1987) POLYDISPERSITY IN FLUIDS, DISPERSIONS, AND COMPOSITES; SOME THEORETICAL RESULTS. Chemical Engineering Communications 51:1-6, pages 233-260.
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Shahong Zhu, Man Zhang, Boyu Deng, Zhong Huang, Yi Ding, Gang Wang, Hairui Yang & Guangxi Yue. (2022) Development and validation of a dynamic flowsheet model for a 350 MWe supercritical circulating fluidized bed boiler. Applied Thermal Engineering 209, pages 118265.
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Zecheng Liu, Wenqi Zhong, Yingjuan Shao & Xuejiao Liu. (2020) Exergy analysis of supercritical CO2 coal-fired circulating fluidized bed boiler system based on the combustion process. Energy 208, pages 118327.
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Ke Qin, Henrik Thunman & Bo Leckner. (2017) Mass transfer under segregation conditions in fluidized beds. Fuel 195, pages 105-112.
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Junnan Chao, Junfu Lu, Hairui Yang, Man Zhang & Qing Liu. (2015) Experimental study on the heat transfer coefficient between a freely moving sphere and a fluidized bed of small particles. International Journal of Heat and Mass Transfer 80, pages 115-125.
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Frank Shaffer, Balaji Gopalan, Ronald W. Breault, Ray Cocco, S.B. Reddy Karri, Roy Hays & Ted Knowlton. (2013) High speed imaging of particle flow fields in CFB risers. Powder Technology 242, pages 86-99.
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F. Di Natale, R. Nigro & F. Scala. 2013. Fluidized Bed Technologies for Near-Zero Emission Combustion and Gasification. Fluidized Bed Technologies for Near-Zero Emission Combustion and Gasification 177 253 .
Xuemin Yang, Bing Liu & Weigang Lin. (2012) Process Simulation of Using Coal Pyrolysis Gas to Control NO and N 2 O Emissions during Coal Decoupling Combustion in a Circulating Fluidized Bed Combustor Based on Aspen Plus . Energy & Fuels 26:8, pages 5210-5225.
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Bing Liu, Xue-min Yang, Wen-li Song & Wei-gang Lin. (2012) Process simulation of formation and emission of NO and N2O during coal decoupling combustion in a circulating fluidized bed combustor using Aspen Plus. Chemical Engineering Science 71, pages 375-391.
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Xuemin Yang, Bing Liu, Wenli Song & Weigang Lin. (2011) Process Simulation of Emission and Control for NO and N 2 O during Coal Combustion in a Circulating Fluidized Bed Combustor Based on Aspen Plus . Energy & Fuels 25:8, pages 3718-3730.
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Bing Liu, Xuemin Yang, Wenli Song & Weigang Lin. (2011) Process Simulation Development of Coal Combustion in a Circulating Fluidized Bed Combustor Based on Aspen Plus. Energy & Fuels 25:4, pages 1721-1730.
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Fabrizio Scala. (2007) Mass transfer around freely moving active particles in the dense phase of a gas fluidized bed of inert particles. Chemical Engineering Science 62:16, pages 4159-4176.
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F. Berruti & R. Wong. 1992. Chemical Reactor Technology for Environmentally Safe Reactors and Products. Chemical Reactor Technology for Environmentally Safe Reactors and Products 379 408 .
S.C. Saxena. (1990) Devolatilization and combustion characteristics of coal particles. Progress in Energy and Combustion Science 16:1, pages 55-94.
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Pradeep K. Agarwal, William J. Mitchell & Robert D. La Nauze. (1988) Transport phenomena in multi-particle systems—III. Active particle mass transfer in fluidized beds of inert particles. Chemical Engineering Science 43:9, pages 2511-2521.
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