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Effects of sodium and sulfur on catalytic performance of supported iron catalysts for the Fischer-Tropsch synthesis of lower olefins

机译:钠和硫对费-托合成低级烯烃的负载型铁催化剂催化性能的影响

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摘要

The Fischer-Tropsch synthesis of lower olefins (FTO) is an alternative process for the production of major chemical building blocks from natural gas, coal, or biomass-derived synthesis gas. The addition of low concentrations of sulfur plus sodium to Fe/α-Al_2O_3 resulted in catalysts with high C_2-C_4 olefins selectivity (~50%C), enhanced catalytic activity, and decreased methane production (<20%C) when the reaction was carried out at 340 C, 20 bar and H_2/CO = 1. Sodium reduced methane selectivity by increasing the chain growth probability while sulfur probably reduced the hydrogen coverage of the catalyst resulting in even lower methane selectivities and higher olefin content of the products. The addition of extra sodium resulted in a detrimental effect on catalytic activity while favoring the formation of carbon deposits. Our results show that the nature and concentration of the promoters play a key role in the design of FTO catalysts with optimum catalytic performance.
机译:费-托低级烯烃合成(FTO)是从天然气,煤炭或生物质衍生的合成气生产主要化学构件的替代方法。在Fe /α-Al_2O_3中加入低浓度的硫和钠后,催化剂在反应过程中具有较高的C_2-C_4烯烃选择性(〜50%C),增强的催化活性和降低的甲烷生成量(<20%C)。在340°C,20 bar和H_2 / CO = 1的条件下进行。钠通过增加链增长的可能性降低了甲烷的选择性,而硫可能降低了催化剂的氢覆盖率,从而导致更低的甲烷选择性和更高的烯烃含量。额外的钠的添加对催化活性产生不利影响,同时有利于碳沉积物的形成。我们的结果表明,助催化剂的性质和浓度在具有最佳催化性能的FTO催化剂设计中起着关键作用。

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