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Effect of Promoter Nature on Synthesis Gas Conversion to Alcohols over (K)MeMoS2/Al2O3 Catalysts

机译:启动子性质对(K)Memos2 / Al2O3催化剂的合成气转化对醇的影响

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The influence of the promoter nature and of a modifier in (K)(Me)MoS2/Al2O3 (Me=Fe, Co, Ni) catalysts on the conversion and selectivity of products of synthesis gas conversion to alcohols and jnl oxygenates was investigated. Relationships between promoter nature, hydrocarbon chain length and selectivity in the formed alcohols were established. Electronic structure of a promoter atom in an active site (AS) was found to strongly affect selectivity of alcohol formation. Promotion of the S-edge by Fe, Co or Ni suppressed hydrogen activation, which resulted in a lower synthesis gas conversion. Promotion of the M-edge by Fe, Co, or Ni entailed the formation of double vacancies which are active sites of synthesis gas conversion. Potassium affected the oxophilicity of Mo atoms and reduced Co/Ni-promoted MoS AS. It decreased the probability of C-O bond breaking in the adsorbed intermediate and shifted selectivity from the formation of alkyl towards alkoxide fragments over these catalysts.
机译:研究了启动子性质和改性剂的影响(K)(ME)MOS2 / Al2O3(ME = Fe,Co,Ni)催化剂对醇和JN1含氧化物的转化和选择性的转化和选择性。 建立了促进剂性质,烃链长度与所形成的醇中的选择性之间的关系。 发现有活性位点(AS)中启动子原子的电子结构强烈影响醇形成的选择性。 通过Fe,Co或Ni抑制氢激活促进S边缘,从而导致合成气体转化率较低。 促进FE,CO或NI的M-Edge旨在形成双职位空缺,是合成气转化的活性部位。 钾影响了Mo原子的冻干,并减少了Co / Ni促进的MOS。 它降低了在这些催化剂上形成烷基醚烷基的烷基中的吸附中间体和移位选择性的C-O键断裂的概率。

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