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大型硫回收装置多功能CO变换加氢催化剂应用总结
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作者 裴爱霞 《炼油技术与工程》 CAS 2024年第5期53-56,共4页
普光气田是国内成功开发的首个高含硫气田,原料气(天然气)碳硫比高,再生酸性气CO_(2)含量高,会反应生成CO继而生成COS、CS_(2)等有机物,成为影响装置达标排放的关键因素之一。研究开发了具有CO变换功能的克劳斯尾气加氢催化剂,并成功应... 普光气田是国内成功开发的首个高含硫气田,原料气(天然气)碳硫比高,再生酸性气CO_(2)含量高,会反应生成CO继而生成COS、CS_(2)等有机物,成为影响装置达标排放的关键因素之一。研究开发了具有CO变换功能的克劳斯尾气加氢催化剂,并成功应用于中国石化中原油田普光气田天然气净化厂200 kt/a硫回收装置。工业应用结果表明:加氢反应器过程气CO变换率超过90%,在线炉制氢天然气消耗量减少279 m^(3)/h,催化剂加氢转化率、有机硫水解率均超过99%,烟气SO_(2)排放浓度降至200 mg/m^(3)以下,CO排放浓度降低了90%,效益显著。 展开更多
关键词 硫回收装置 多功能 CO变换 加氢催化剂 反应温度 反应空速 活性 有机硫
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Higher alcohol synthesis over Cu-Fe composite oxides with high selectivity to C_(2+)OH 被引量:12
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作者 Zhenghong Bao Kang Xiao +5 位作者 Xingzhen Qi Xinxing Wang Liangshu Zhong Kegong Fang Minggui Lin Yuhan Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2013年第1期107-113,共7页
Cu-Fe composite oxides were prepared by co-precipitation method and tested for higher alcohol synthesis from syngas. The selectivity to C2+OH and C6+OH in alcohol distribution was very high while the methane product... Cu-Fe composite oxides were prepared by co-precipitation method and tested for higher alcohol synthesis from syngas. The selectivity to C2+OH and C6+OH in alcohol distribution was very high while the methane product fraction in hydrocarbon distribution was rather low, demonstrating a promising potential in higher alcohols synthesis from syngas. The distribution of alcohols and hydrocarbons approximately obeyed Anderson-Schulz-Flory distribution with similar chain growth probability, indicating alcohols and hydrocarbons derived from the same intermediates. The effects of Cu/Fe molar ratio, reaction temperature and gas hourly space velocity (GHSV) on catalytic performance were studied in detail. The sample with a Cu/Fe molar ratio of 10/1 exhibited the best catalytic performance. Higher reaction temperature accelerated water-gas-shift reaction and led to lower total alcohols selectivity. GHSV showed great effect on catalytic performance and higher GHSV increased the total alcohol selectivity, indicating there existed visible dehydration reaction of alcohol into hydrocarbon. 展开更多
关键词 higher alcohol synthesis SYNGAS Cu-Fe composite oxides molar ratio ghsv
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