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Deep Desulphurization and DeNO_X in Circulating Fluidized Bed Boiler 被引量:1

Deep Desulphurization and DeNO_X in Circulating Fluidized Bed Boiler
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摘要 With the revision of emission standards, deep desulphurization and DeNO X is needed in circulating fluidized bed (CFB) boilers. The operation of the first set of 300-MW CFB boiler plus limestone/gypsum wet flue gas desulphurization (FGD) system in the world shows that deep desulphurization and DeNO X of CFB boilers has higher SO2 removal efficiency at a lower Ca/S ratio compared with traditional inner desulphurization mode. It can meet the increasingly rigid emission standards, and is suitable for more fuels. Deep desulphurization and DeNO X can also achieve a highly-efficient high-temperature CFB boiler that can not only achieve inner desulphurization and low NO X emission, but benefits low-grade, high sulfur content fuels as well. Research of deep desulphurization and DeNO X will be a developing direction for CFB boilers. With the revision of emission standards, deep desulphurization and DeNO X is needed in circulating fluidized bed (CFB) boilers. The operation of the first set of 300-MW CFB boiler plus limestone/gypsum wet flue gas desulphurization (FGD) system in the world shows that deep desulphurization and DeNO X of CFB boilers has higher SO2 removal efficiency at a lower Ca/S ratio compared with traditional inner desulphurization mode. It can meet the increasingly rigid emission standards, and is suitable for more fuels. Deep desulphurization and DeNO X can also achieve a highly-efficient high-temperature CFB boiler that can not only achieve inner desulphurization and low NO X emission, but benefits low-grade, high sulfur content fuels as well. Research of deep desulphurization and DeNO X will be a developing direction for CFB boilers.
出处 《Electricity》 2011年第5期46-49,共4页 电气(英文版)
关键词 CFB BOILER DEEP DESULPHURIZATION DEEP DENOX FLUE gas DESULPHURIZATION CFB boiler deep desulphurization deep DeNOX flue gas desulphurization
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  • 1邱燕,田茂诚,牛蔚然,程林.降低循环流化床锅炉飞灰含碳量的理论及其应用[J].热能动力工程,2005,20(4):369-372. 被引量:18
  • 2赵旭东,吴少华,项光明,马春元.循环流化床烟气脱硫装置对电除尘器影响研究[J].热能动力工程,2005,20(4):377-380. 被引量:8
  • 3李剑峰.循环流化床锅炉在煤矿电厂应用前景好[J].煤矿机械,2006,27(5):835-835. 被引量:7
  • 4张远耀.循环流化床锅炉的“脱硫”计算与问题探讨[J].中氮肥,1996(6):1-4. 被引量:1
  • 5Robert A. Dry, Anthony L. Compaan, Jerry Hebb, Scott L. Darling. The JEA northside repowering CFB combustion demonstration project: an update [ C ]. Proceedings of the International Fluidized Bed Combustion Conference, ASME, 2003.
  • 6Tsuo Y, MeClung J, Sellakumar K. Improving limestone utilization in a commercial - scale circulating fluidized bed boiler through ash reactivation and recycle[ C]. Proceedings of the International Fluidized Bed Combustion Conference, ASME, 1999.
  • 7Khan T, Kuivalainen R, Lee YY. Improving limestone utilization in circulating fluidized bed combustors through the reactivation and recycle of partially utilized limestone in ash [ C ]. Proceedings of the International Fluidized Bed Combustion Conference, ASME,1995,2:831 - 840.
  • 8Blondin J, Anthony EJ, Iribarne AP. A new approach to hydration of FBC residues [ C ]. Proceedings of the International Fluidized Bed Combustion Conference, ASME, 1993, 2 : 827 - 834.
  • 9Julien S, Brereton CMH, Lim CJ, Grace JR, Chiu JH. Spent sorbent reactivation using steam [ C ]. Proceedings of the International Fluidized Bed Combustion Conference, ASME, 1995,2:841 - 50.
  • 10Anthony EJ, Iribame AP, Iribame Jr, Jia L. Reuse of landfilled FBC residues [ J ]. Fuel 1997 ;76 (7) : 603 - 6.

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