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不同湿度的H2S在Fe2O3表面的吸附反应研究
引用本文:杨姝宜,李萍,张振华,赵杉林,刘洪金,商丽艳.不同湿度的H2S在Fe2O3表面的吸附反应研究[J].石油化工高等学校学报,2009,22(2):34-37.
作者姓名:杨姝宜  李萍  张振华  赵杉林  刘洪金  商丽艳
作者单位:1. 辽宁石油化工大学环境与生物工程学院,辽宁抚顺,113001
2. 辽宁石油化工大学化学与材料科学学院,辽宁抚顺,113001
摘    要:研究了H2S在Fe2O3表面的吸附反应过程,考察了温度,H2S湿度,H2S起始体积分数,Fe2O3湿度对吸附反应的影响。结果表明:温度的降低,H2S湿度和起始体积分数的增加,均促进吸附反应;而且当Fe2O3的湿度为10%时,吸附H2S的体积分数最大。干燥的H2S在干燥的Fe2O3表面也发生吸附反应,生成FeS,对设备产生一定的腐蚀作用。

关 键 词:吸附反应  H2S湿度  Fe2O3湿度  硫化反应

The Performance of Different Humidity Sulfured Hydrogen Absorbed on the Surface of Ferrous Oxide
YANG Shu-yi,LI Ping,ZHANG Zhen-hua,ZHAO Shan-lin,LIU Hong-jin,SHANG Li-yan.The Performance of Different Humidity Sulfured Hydrogen Absorbed on the Surface of Ferrous Oxide[J].Journal of Petrochemical Universities,2009,22(2):34-37.
Authors:YANG Shu-yi  LI Ping  ZHANG Zhen-hua  ZHAO Shan-lin  LIU Hong-jin  SHANG Li-yan
Affiliation:YANG Shu--yi , LI Ping , ZHANG Zhen--hua , ZHAO Shan--lin , LIU Hong--jin , SHANG Li--yan (1. School of Environmental and Biological Engineering ,Liaoning University of Petroleum & Chemical Technology, Fushun Liaoning 113001 ,P. R. China; 2. School of Chemistry & Materials Science, Liaoning University of Petroleum & Chemical Technology ,Fushun Liaoning 113001 ,P. R. China)
Abstract:The sulfured hydrogen gas adsorbed on the surface of ferrous oxide was investigated. The effect of temperature, humidity of sulfured hydrogen gas, volume ratio of sulfured hydrogen gas and humidity of ferrous oxide was discussed. The results show that decreasing sulfide temperature,increasing humidity and volume ratio of sulfured hydrogen gas would enhance the absorb reaction. And when the humidity of ferrous oxide was 10% , the absorb volume ratio of sulfured hydrogen gas is larger than other humidity of ferrous oxide. Another conclusion is that dry sulfured hydrogen gas adsorbed on the surface of ferrous oxide and the product is sulfide ferrous, which can make an effect of corruption on the equipment.
Keywords:Absorb reaction  Humidity of sulfured hydrogen gas  Humidity of ferrous oxide  Sulfide reaction
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