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煤的模型化合物热解过程中HCN_NH_3的逸出规律
引用本文:赵科,谭厚章,周屈兰,徐通模. 煤的模型化合物热解过程中HCN_NH_3的逸出规律[J]. 热能动力工程, 2004, 19(3): 246-248
作者姓名:赵科  谭厚章  周屈兰  徐通模
作者单位:西安交通大学,能源与动力工程学院,陕西,西安,710049
基金项目:国家重点基础研究专项经费资助项目 (G19990 2 2 2 10 )
摘    要:为了解煤燃烧过程中NOx的生成机理,在600~1400℃温度范围内,选取吡啶、吡咯为煤的含氮模型化合物,采取傅立叶红外光谱仪(Ft-Ir)和分光光度计连用方式,在等温连续式流动反应器中实验研究了模型化合物热解过程中HCN、NH3的逸出规律。结果表明:HCN是模型化合物的热解产物中的主要含氮产物;吡啶、吡咯的HCN的转换率都随着温度的升高而增大;同温度下,吡咯的HCN生成率高于吡啶的HCN生成率,吡咯的NH3生成率高于吡啶的NH3生成率。

关 键 词:煤燃烧 氮 模型化合物 Ft-Ir
文章编号:1001-2060(2004)03-0246-03

The Law of HCN and NH3 Escape during the Pyrolysis of Model Compounds of Coal
ZHAO Ke,TAN Hou-zhang,ZHOU Qu-lan,et al. The Law of HCN and NH3 Escape during the Pyrolysis of Model Compounds of Coal[J]. Journal of Engineering for Thermal Energy and Power, 2004, 19(3): 246-248
Authors:ZHAO Ke  TAN Hou-zhang  ZHOU Qu-lan  et al
Abstract:To understand the formation mechanism of NO_ x during a combustion process, tests were conducted over the temperature range of 873-1 673 K by selecting pyridine and pyrrole as nitrogen-containing model compounds. With the combined use of a Fourier transform infrared spectrometer (Ft-Ir) and a spectrophotometer the law of HCN and NH_3 escape during the pyrolysis of model compounds was experimentally investigated in an isothermal continuous-flow reactor. The investigation results indicate that HCN is the main nitrogen-containing product in the pyrolysis products of model compounds. The conversion rate of pyridine and pyrrole will increase with a rise in temperature. Under a same temperature the HCN formation rate of pyrrole is higher than that of pyridine and the NH_3 formation rate of pyrrole is higher than that of pyridine.
Keywords:coal combustion   nitrogen   model compound   Fourier transform infrared radiation analyzer
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