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Rate and selectivity hysteresis during the carbon monoxide hydrogenation over promoted Co/MnOx catalysts

机译:促进型Co / MnOx催化剂在一氧化碳加氢过程中的速率和选择性滞后

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摘要

While cobalt-based catalysts have been used in industrial Fischer-Tropsch synthesis for decades, little is known about how the dynamics of the Co-Co2C phase transformation drive their performance. Here we report on the occurrence of hysteresis effects in the Fischer-Tropsch reaction over potassium promoted Co/MnOx catalyst. Both the reaction rate and the selectivity to chain-lengthened paraffins and terminally functionalized products (aldehydes, alcohols, olefins) show bistability when varying the hydrogen/carbon monoxide partial pressures back and forth from overall reducing to carbidizing conditions. While the carbon monoxide conversion and the selectivity to functionalized products follow clockwise hysteresis, the selectivity to paraffins shows counter-clockwise behavior. In situ X-ray diffraction demonstrates the activity/selectivity bistability to be driven by a Co-Co2C phase transformation. The conclusions are supported by High Resolution Transmission Electron Microscopy which identifies the Co-Co2C transformation, Mn5O8 layered topologies at low H2/CO partial pressure ratios, and MnO at high such ratios.
机译:尽管钴基催化剂已在费托工业合成中使用了数十年,但对Co-Co2C相变动力学如何驱动其性能知之甚少。在这里,我们报告了费-托反应在钾促进的Co / MnOx催化剂上发生的磁滞效应。当将氢气/一氧化碳分压从总体还原条件转变为碳化条件时,反应速率和对链延长的链烷烃及末端官能化产物(醛,醇,烯烃)的选择性均显示出双稳性。一氧化碳转化率和对官能化产物的选择性遵循顺时针方向的迟滞,而对石蜡的选择性则表现出逆时针的行为。原位X射线衍射表明活性/选择性双稳态受Co-Co2C相变驱动。这些结论得到了高分辨率透射电子显微镜的支持,该显微镜确定了Co-Co2C转变,低H2 / CO分压比的Mn5O8分层拓扑结构以及高比率的MnO。

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