首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Fischer-Tropsch Synthesis: Influence of Mn on the Carburization Rates and Activities of Fe-Based Catalysts by TPR-EkAFS/XANES and Catalyst Testing
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Fischer-Tropsch Synthesis: Influence of Mn on the Carburization Rates and Activities of Fe-Based Catalysts by TPR-EkAFS/XANES and Catalyst Testing

机译:费-托合成:TPR-EkAFS / XANES和催化剂测试中Mn对Fe基催化剂的渗碳速率和活性的影响

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摘要

Fe-based catalysts containing different amounts of Mn were tested for Fischer-Tropsch synthesis using a stirred tank reactor at 270 °C, 1.21 MPa, and H2:CO = 0.7. Catalyst activation by carburization with 10% CO/He was followed by Temperature Programmed Reduction/X-ray Absorption Spectroscopy (TPR-EXAFS/ XANES) from room temperature to 300 °C. γ-Fe2O3 was converted into iron carbides, whereas MnO_x was reduced to oxygen deficient MnO. Mn hindered Fe carburization, such that the carburized catalyst displayed higher Fe3O4 content than the catalyst without Mn. EXAFS fitting indicates that the carburized catalyst contained a mixture of Hagg carbide, Fe3O4, and Mn oxides. Increasing Mn content led to higher CH4 and light product selectivities, and lower light olefin selectivities. Higher and stable conversions were obtained with a catalyst containing an almost equimolar Fe/Mn ratio relative to the catalyst without Mn. Selectivity trends are attributed to the higher WGS rates observed on the FeMn catalysts, consistent with the structural differences observed.
机译:使用搅拌釜式反应器在270°C,1.21 MPa和H2:CO = 0.7的条件下测试了含有不同Mn量的Fe基催化剂的费-托合成。通过用10%CO / He渗碳进行催化剂活化,然后进行程序升温还原/ X射线吸收光谱(TPR-EXAFS / XANES),从室温到300°C。 γ-Fe2O3转化为碳化铁,而MnO_x还原为缺氧的MnO。 Mn阻碍了Fe的渗碳,因此渗碳催化剂显示出比不含Mn的催化剂更高的Fe 3 O 4含量。 EXAFS拟合表明渗碳催化剂包含Hagg碳化物,Fe3O4和Mn氧化物的混合物。 Mn含量的增加导致较高的CH 4和轻质产物选择性以及较低的轻质烯烃选择性。相对于不含Mn的催化剂,使用具有几乎等摩尔的Fe / Mn比的催化剂可获得更高且稳定的转化率。选择性趋势归因于在FeMn催化剂上观察到的较高的WGS速率,这与观察到的结构差异一致。

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