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Combined quantitative FTIR and online GC study of Fischer-Tropsch catalysts

机译:联合定量FTIR和在线GC研究对Fischer-Tropsch Catalysts

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Graphical abstract Display Omitted Highlights ? Combined quantitative FTIR and on-line GC analysis of Fischer-Tropsch catalysts. ? Various reaction conditions and Fischer-Tropsch active metals investigated. ? Spectroscopically observed species ascribed to adsorbed reaction products. ? Species located on γ-alumina support are thought to be oxygenated products. ? Spectroscopically observed species do not directly link to reaction products. Abstract A method for the quantification of the chain length of surface hydrocarbon species on Fischer-Tropsch catalysts by in-situ FTIR was combined with online gas chromatography in order to investigate any potential relationship between adsorbed hydrocarbons species and those detected as reaction products. By varying the reaction conditions and the active metal, changes to the chain lengths of surface species and the product distribution were monitored. Results show that the species observed spectroscopically are predominantly adsorbed reaction products which do not directly relate to the detected reaction products. Hydrocarbon species which can be transported to the support material (γ-alumina) may be ascribed to oxygenated products which are not produced in detectable amounts by GC at low conversion but are selectively adsorbed from the gas phase. ]]>
机译:<![cdata [ 图形摘要 显示省略 亮点 组合定量FTIR和Fischer-Tropsch催化剂的在线GC分析。 瓦里对反应条件和Fischer-Tropsch活性金属调查。 < CE:PARA ID =“P0015”视图=“全部”>光谱观察到归因于吸附反应产物的物种。 < CE:标签>? 位于γ-氧化铝载体上的物种被认为是含氧产品。 光谱观察的物种不直接链接反应产品。 抽象 通过原位液相识液上的表面烃种类链长的方法:Italic> FTIR与在线气相色谱结合在线气相色谱,以研究吸附之间的任何潜在关系烃种类和检测为反应产物的物种。通过改变反应条件和活性金属,监测对表面物质的链长的变化和产物分布。结果表明,观察到光谱术的物种主要是吸附的反应产物,其与检测到的反应产物不直接涉及。可以传送到支撑材料(γ-氧化铝)的烃物质可以归因于氧化产物,其在低转化率下通过GC以可检测量产生的氧化产物,但是从气相中选择性地吸附。 ]]>

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