中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Process Simulation of Using Coal Pyrolysis Gas to Control NO and N2O Emissions during Coal Decoupling Combustion in a Circulating Fluidized Bed Combustor Based on Aspen Plus

文献类型:期刊论文

作者Yang, Xuemin1; Liu, Bing1,2; Lin, Weigang1
刊名ENERGY & FUELS
出版日期2012-08-01
卷号26期号:8页码:5210-5225
关键词operating parameters pulverized-coal utility boiler biomass air reduction model char
ISSN号0887-0624
其他题名Energy Fuels
中文摘要A process simulation model of CFB coal decoupling combustion process has been developed based on Aspen Plus and verified by comparing with the reported NO and N2O emissions from experiments. The detailed information on formation and decomposition of NO and N2O along the height of CFB riser column can be quantitatively simulated by the developed process simulation model. The simulated results show that about 99.9% of the emitted NO in flue gas is controlled by fuel-N combustion; however, the introduced NH3 in coal pyrolysis gaseous products as an NO precursor can play an important role on NO formation from about 39.7% to 97.6% in the dense phase region at the lower CFB riser column. About 98.9%-99.8% of NO decomposition along the height of CFB riser column is dominated by char particles reduction. About 91.8%-95.8% of the emitted N2O in flue gas is controlled by fuel-N combustion; however, the introduced HCN in coal pyrolysis gaseous products as an N2O precursor has an obvious effect on N2O formation from 74.2% to 94.6% in the dense phase region at the lower CFB riser column. The contribution of char particles reduction on N2O decomposition can be found as 1.8%-3.6% along the height of CFB riser column. A competitive relationship between O-2 oxidization and CO reduction on N2O decomposition along the height of CFB riser column during the CFB coal decoupling combustion process has been revealed.
英文摘要A process simulation model of CFB coal decoupling combustion process has been developed based on Aspen Plus and verified by comparing with the reported NO and N2O emissions from experiments. The detailed information on formation and decomposition of NO and N2O along the height of CFB riser column can be quantitatively simulated by the developed process simulation model. The simulated results show that about 99.9% of the emitted NO in flue gas is controlled by fuel-N combustion; however, the introduced NH3 in coal pyrolysis gaseous products as an NO precursor can play an important role on NO formation from about 39.7% to 97.6% in the dense phase region at the lower CFB riser column. About 98.9%-99.8% of NO decomposition along the height of CFB riser column is dominated by char particles reduction. About 91.8%-95.8% of the emitted N2O in flue gas is controlled by fuel-N combustion; however, the introduced HCN in coal pyrolysis gaseous products as an N2O precursor has an obvious effect on N2O formation from 74.2% to 94.6% in the dense phase region at the lower CFB riser column. The contribution of char particles reduction on N2O decomposition can be found as 1.8%-3.6% along the height of CFB riser column. A competitive relationship between O-2 oxidization and CO reduction on N2O decomposition along the height of CFB riser column during the CFB coal decoupling combustion process has been revealed.
WOS标题词Science & Technology ; Technology
类目[WOS]Energy & Fuels ; Engineering, Chemical
研究领域[WOS]Energy & Fuels ; Engineering
关键词[WOS]OPERATING PARAMETERS ; PULVERIZED-COAL ; UTILITY BOILER ; BIOMASS ; AIR ; REDUCTION ; MODEL ; CHAR
收录类别SCI
原文出处://WOS:000307494300066
语种英语
WOS记录号WOS:000307494300066
公开日期2013-11-28
版本出版稿
源URL[http://ir.ipe.ac.cn/handle/122111/6457]  
专题过程工程研究所_研究所(批量导入)
作者单位1.Chinese Acad Sci, Inst Proc Engn, State Key Lab Multiphase Complex Syst, Beijing 100190, Peoples R China
2.Chinese Acad Sci, Grad Univ, Beijing 100039, Peoples R China
推荐引用方式
GB/T 7714
Yang, Xuemin,Liu, Bing,Lin, Weigang. Process Simulation of Using Coal Pyrolysis Gas to Control NO and N2O Emissions during Coal Decoupling Combustion in a Circulating Fluidized Bed Combustor Based on Aspen Plus[J]. ENERGY & FUELS,2012,26(8):5210-5225.
APA Yang, Xuemin,Liu, Bing,&Lin, Weigang.(2012).Process Simulation of Using Coal Pyrolysis Gas to Control NO and N2O Emissions during Coal Decoupling Combustion in a Circulating Fluidized Bed Combustor Based on Aspen Plus.ENERGY & FUELS,26(8),5210-5225.
MLA Yang, Xuemin,et al."Process Simulation of Using Coal Pyrolysis Gas to Control NO and N2O Emissions during Coal Decoupling Combustion in a Circulating Fluidized Bed Combustor Based on Aspen Plus".ENERGY & FUELS 26.8(2012):5210-5225.

入库方式: OAI收割

来源:过程工程研究所

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