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Controllable assembly of Fe3O4–Fe3C@MC by in situ doping of Mn for CO2 selective hydrogenation to light olefins

机译:Fe3O4 – fe3c@mc的可控组装通过原位掺杂Mn的二氧化碳选择性氢化至光烯烃

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摘要

Fe-based catalysts have shown the potential to convert CO2 into light olefins, but their industrial processes are hindered by low selectivity and stability. Herein, efficient Mn in situ doped Fe-based catalysts anchored in mesoporous carbon were prepared by the solvent evaporation induced self-assembly (EISA) method, and the catalysts were tested in CO2 hydrogenation reaction. The effect of different in situ doped promoters (Zr, Mn, and W) on the selectivity to light olefins was systematically studied, which shows that the promoters significantly affected the ratio of carbon species and hydrogen species adsorbed on the surface of active sites. The test results show that 20%Mn–1.2Fe@MC had the highest CO2 conversion (59.58%) and light olefin selectivity (65.57%). The characterization results show that the in situ doped Mn not only affects the carbonization of FeOx that regulates the ratio of FeOx/FeCx, but also improves the generation of Mn-doped Fe3C NPs. The doping of Mn into Fe3C creates a moderate electronic density environment that is beneficial to generating light olefins. Moreover, the Mn–C interaction suppresses the runoff of C from Fe3C, which enhances the stability.
机译:基于FE的催化剂已经表明了将CO2转化为光烯烃的潜力,但是它们的工业过程受到低选择性和稳定性的阻碍。在此,通过溶剂蒸发诱导的自组装(EISA)方法制备了锚定在介孔碳中的有效MN原位掺杂的基于Fe的催化剂,并在CO2氢化反应中测试了催化剂。系统地研究了不同原位掺杂启动子(ZR,MN和W)对光烯烃的选择性的影响,这表明启动子显着影响了在活性位点表面吸附的碳物种和氢种的比率。测试结果表明,20% mn – 1.2fe@mc的二氧化碳转化率最高(59.58%)和光烯烃的选择性(65.57%)。表征结果表明,原位掺杂的MN不仅影响了调节FEOX/FECX比率的Feox的碳化,还可以改善MN掺杂的FE3C NP的产生。将Mn掺入Fe3C会产生一个中等的电子密度环境,有助于产生光烯烃。此外,MN -C相互作用抑制了Fe3c的C径流,从而增强了稳定性。

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