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作 者:徐红东 曾梅 朱春鹏 刘军 赵蒙 林益安 Xu Hongdong;Zeng Mei;Zhu Chunpeng;Liu Jun;Zhao Meng;Lin Yi'an(The Northwest Research Institute of Chemical Industry Co.,Ltd.,Xi'an Shaanxi 710061,China;Xi'an Origin Chemical Technologies Co.,Ltd.,Xi'an Shaanxi 710061,China)
机构地区:[1]西北化工研究院有限公司,陕西西安710061 [2]西安元创化工科技股份有限公司,陕西西安710061
出 处:《煤化工》2020年第2期1-5,共5页Coal Chemical Industry
基 金:陕西省重点研发计划(2017ZDXM-G-1-2)。
摘 要:为提高煤、天然气资源综合利用效率,优化合成气成分,进行了煤与天然气气流床共气化技术研究。介绍了煤与天然气气流床共气化的试验装置及工艺流程,考察了气化温度、压力、水煤浆浓度、CH4与煤比对共气化反应的影响。结果表明,气化温度和CH4与煤比是共气化反应的主要影响因素,较高的气化温度对共气化反应有利,气化温度为1 350℃时,共气化指标较好,有效气体积分数大于90%;随着CH4与煤比的增大,合成气n(H2)/n(CO)增高。CH4与煤比为0.9 m3/kg时,合成气中n(H2)/n(CO)约1.2。根据后续合成工艺要求,通过调节气化温度和CH4与煤比,可获得n(H2)/n(CO)在0.8~2.0的合成气。In order to improve the utilization efficiency of coal & natural gas and optimize the composition of syngas, the technology of entrained-flow co-gasification for coal & natural gas was studied. The test equipment and process flow were introduced, the impact of gasification temperature, pressure, CWS concentration and V(CH4)/m(coal) on the co-gasification were investigated. The results showed that gasification temperature and V(CH4)/m(coal) were the main influential factors on co-gasification. Higher gasification temperature was beneficial to co-gasification reaction. When the gasification temperature was 1 350 ℃, the volume content of effective syngas was greater than 90%. The n(H2)/n(CO) in syngas was about 1.2 when V(CH4)/m(coal) was 0.9 m3/kg, and the n(H2)/n(CO) increased with the increase of V(CH4)/m(coal). The n(H2)/n(CO) in syngas could be adjusted from 0.8 to 2.0 by changing the gasification temperature and V(CH4)/m(coal) to meet the requirements of downstream synthesis process.
关 键 词:煤 天然气 气流床气化 共气化 n(H2)/n(CO) 气化温度 CH4与煤比
分 类 号:TQ546[化学工程—煤化学工程]
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