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首页> 外文期刊>Catalysis Today >Effects of alkali promoters on tri-metallic Co-Ni-Cu-based perovskite catalyst for higher alcohol synthesis from syngas
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Effects of alkali promoters on tri-metallic Co-Ni-Cu-based perovskite catalyst for higher alcohol synthesis from syngas

机译:碱促进剂对三金属共生基钙钛矿催化剂的影响较高醇合成合成气

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Direct conversion of natural gas-derived syngas into higher alcohols via the Fischer-Tropsch process offers a more sustainable pathway to address fuels and chemicals demands for various industries in the near future. Large scale application of this process nonetheless relies on the availability of a highly active and selective catalyst. In this work, tri-metallic Co-Ni-Cu catalyst derived from La0.9Sr0.1Co0.8Ni0.1Cu0.1O3 perovskite precursor with two different alkali promoters were prepared and tested for higher alcohol synthesis from syngas. Active components and catalyst performances were found to vary with same weight loading of Na and K. K-promoted catalyst demonstrated the best higher alcohol formation with the higher alcohol distribution of 82.2% and alcohol chain growth probability factor of 0.53 at 325 degrees C, followed by the Na-promoted and non-promoted counterparts. The rationale behind the alkali addition-performance relationship is two-fold. On one hand, the addition of alkali promotes the formation of stable Co2C; resulting in high Co2C/Co ratio that enhances the higher alcohol distribution but decreases the CO conversion. On the other hand, the increased catalyst basicity obtained from alkali promotion facilitates the carbon chain propagation of alcohols, especially for the conversion of methanol to ethanol. In addition, the alkali promoters, especially K, prevent the deactivation of catalyst Co-Ni-Cu by eliminating the carbon deposition during the reaction; resulting in a stable catalyst even at 340 degrees C.
机译:通过费托法将天然气衍生的合成气直接转化为高级醇提供了一条更可持续的途径,以满足不同行业在不久的将来对燃料和化学品的需求。然而,该工艺的大规模应用依赖于高活性和高选择性催化剂的可用性。本研究以La0为原料制备了三金属钴镍铜催化剂。9Sr0。1Co0。8Ni0。1Cu0。制备了含两种不同碱助剂的钙钛矿型1O3前驱体,并测试了其用于合成气合成高级醇的性能。活性组分和催化剂性能随钠和钾的相同重量负载而变化。在325℃时,钾促进的催化剂表现出最好的高醇形成,高醇分布为82.2%,醇链增长概率因子为0.53,其次是钠促进和非促进的催化剂。碱添加性能关系背后的原理是双重的。一方面,碱的加入促进了稳定Co2C的形成;导致较高的Co2C/Co比率,从而提高了较高的酒精分布,但降低了Co转化率。另一方面,碱促进得到的催化剂碱度增加有助于醇的碳链扩展,尤其是甲醇转化为乙醇。此外,碱助剂,尤其是K,通过消除反应过程中的积碳来防止催化剂Co-Ni-Cu失活;即使在340摄氏度下也能产生稳定的催化剂。

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