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CO2加氢制甲醇Cu/CeO2催化剂实验研究
Study on Cu/CeO2 catalyst for CO2 hydrogenation to methanol
【摘要】 考察了第二金属Ni改性对CO2加氢制甲醇Cu/CeO2催化剂活性的影响,并通过XRD、BET、XPS、H2-TPR等手段对改性前后催化剂结构进行了表征。结果表明:金属负载量为20%时,Cu/CeO2的比表面积最大;Cu与Ni质量比为3∶1时,催化剂碱度最大,氧空位含量最高,Cu-Ni协同作用最强;该催化剂在反应温度240℃、反应压力3 MPa、液时空速2 400 mL/(g·h)、H2与CO2体积比为3∶1时催化CO2加氢制甲醇效果较优,CO2转化率为18.5%,甲醇时空产率为40.43 g/(kg·h)。
【Abstract】 The effect of metal Ni modification on the activity of Cu/CeO2 catalyst for CO2 hydrogenation to methanol is investigated. The catalyst structure before and after modification is characterized by XRD, BET, XPS, H2-TPR, etc. The results show that the specific surface area of Cu/CeO2 is the largest at a metal loading of 20%. A Cu to Ni mass ratio of 3∶1 results in the largest catalyst alkalinity, the largest oxygen vacancy content, and the strongest Cu-Ni synergism. The catalyst shows a superior reaction effect of CO2 hydrogenation to methanol at a reaction temperature of 240 ℃, a reaction pressure of 3 MPa, a space velocity of 2,400 mL/(g·h), and an H2 to CO2 volume ratio of 3∶1, with a CO2 conversion of 18.5% and a methanol space time yield of 40.43 g/(kg·h).
【Key words】 CO2; hydrogenation; methanol; Cu/CeO2 catalyst; reaction condition; conversion rate; selectivity; space time yield;
- 【文献出处】 炼油技术与工程 ,Petroleum Refinery Engineering , 编辑部邮箱 ,2024年04期
- 【分类号】TQ223.121;TQ426
- 【下载频次】226