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煤化工企业火炬 NOx排放的模拟燃烧实验
引用本文:梁俊宁,卢立栋,宋丽娜,柳玲. 煤化工企业火炬 NOx排放的模拟燃烧实验[J]. 环境工程学报, 2014, 8(1): 285-289
作者姓名:梁俊宁  卢立栋  宋丽娜  柳玲
作者单位:陕西省环境科学研究院, 西安 710061;陕西省环境科学研究院, 西安 710061;陕西省环境科学研究院, 西安 710061;陕西省环境科学研究院, 西安 710061
基金项目:陕西省环境保护科研项目;陕西省科技统筹创新工程计划项目(2012KTZB03-01)
摘    要:针对煤化工企业火炬气燃烧特点,设计了一套模拟燃烧装置,分别研究液化气添加量及燃烧温度对NOx的影响,并对火炬系统NOx的排放系数进行核算。结果表明,火炬系统NOx排放浓度和排放量随液化气添加量的增加而增大;同时研究发现,NOx与燃烧温度之间成正比关系,即温度升高有利于NOx的产生。根据核算结果,火炬系统NOx排放系数在0.099~0.185 kg/t之间,平均为0.139 kg/t。

关 键 词:火炬  氮氧化物(NOx)  排放系数  煤化工  模拟燃烧试验
修稿时间:2013-02-04

Simulated combustion experiment on torch NOx emissions from coal chemical industry
Liang Junning,Lu Lidong,Song Lina and Liu Ling. Simulated combustion experiment on torch NOx emissions from coal chemical industry[J]. Techniques and Equipment for Environmental Pollution Control, 2014, 8(1): 285-289
Authors:Liang Junning  Lu Lidong  Song Lina  Liu Ling
Affiliation:Shaanxi Provincial Academy of Environmental Science, Xi'an, 710061;Shaanxi Provincial Academy of Environmental Science, Xi'an, 710061;Shaanxi Provincial Academy of Environmental Science, Xi'an, 710061;Shaanxi Provincial Academy of Environmental Science, Xi'an, 710061
Abstract:A set of simulated combustion device was designed in terms of the feature of flare gas combustion in coal-chemical industry factories, aiming to identify the effects resulting from both the addition of the liquifiedd gas and burning temperature on the emission of nitrogen oxides. And the emission coefficients of the nitrogen oxides were calculated. The test results indicate that the concentration and amount of the nitrogen oxides emitted from the torch system increase with the addition of the liquifiedd gases. In addition, the proportional relation between nitrogen oxides emission and burning temperature could be drawn based on the experiment results. The nitrogen oxides emission tended to be facilitated with the increase of burning temperature. The emission coefficient of nitrogen oxides emitted from the torch system ranged from 0.099 to 0.185 kg per ton, its average value was 0.139 kg per ton.
Keywords:torch  nitrogen oxides  emission coefficient  coal-chemical industry  simulated combustion experiment
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