中文  
专家人才
论文
专著
专利
获奖
-- 2021改版分割 --
专家人才
奖励
论文
专著
专利
标准
友情链接
中国科学院
国家发改委
国家自然科学基金委
中国科学技术部
中国科普博览
中国化工信息网
美国能源部
澳大利亚联邦科学与研究组织(CSIRO)
山西省科学技术厅
洁净能源创新研究院
您当前的位置:首页>科研成果>论文
论文编号: 122214O120120009
第一作者所在部门: 602组
中文论文题目: Carbon modified Fe-Mn-K catalyst for the synthesis of light olefins from CO hydrogenation
英文论文题目: Carbon modified Fe-Mn-K catalyst for the synthesis of light olefins from CO hydrogenation
论文题目英文:
作者: 张建利
论文出处:
刊物名称: Reaction Kinetics, Mechanisms and Catalysis
: 2011
: 102
: 2
: 437
联系作者: 张建利
收录类别:
影响因子:
摘要: A novel carbon modified Fe–Mn–K catalyst for light olefin synthesis from CO hydrogenation was prepared by the sol–gel method. The effect of carbon contents on the structure and performance of the catalysts was investigated. With the incorporation of carbon, the catalysts showed much different morphology from that prepared by co-precipitation. At the carbon contents between 0.23 and 6.66 wt%, the catalyst particles were around 10 nm while the carbon phase was amorphous. The activity test results indicated that the catalysts (Fe/Mn/K molar ratio = 60/20/1) with carbon modification showed high conversion of CO and selectivity to light olefins with low CH4 selectivity. At the carbon content of 2.43 wt%, the total C2–C4 content in all hydrocarbons and O/P (olefin/paraffin) in the C2–C4 fraction was 49 wt% and 4.89, respectively. Furthermore, when the K content in the catalyst was reduced by half, the C2–C4 olefin yield raised from 60 to 71 g/Nm3 syngas. The formation of carbon provided a more hydrophobic surface, which inhibited the water gas shift reaction (WGSR) and caused a decrease in CO2 selectivity. The dispersion of carbon favored the formation and stabilization of small particles, and promoted the production of light olefins via suppressing the chain propagation.
英文摘要:
外单位作者单位:
备注:

关闭窗口