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首页> 外文期刊>Journal of Catalysis >Ruthenium nanoparticles supported on magnesium oxide: A versatile and recyclable dual-site catalyst for hydrogenation of mono- and poly-cyclic arenes, N-heteroaromatics, and S-heteroaromatics
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Ruthenium nanoparticles supported on magnesium oxide: A versatile and recyclable dual-site catalyst for hydrogenation of mono- and poly-cyclic arenes, N-heteroaromatics, and S-heteroaromatics

机译:负载在氧化镁上的钌纳米颗粒:一种多用途且可回收的双位催化剂,用于单环和多环芳烃,N-杂芳烃和S-杂芳烃的加氢

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摘要

The development of catalysts capable of promoting hydrogenation of aromatics while being resistant to poisoning by nitrogen- and sulfur-containing species is of much interest in connection with hydrotreating of fossil fuels. We report a catalyst composed of ruthenium nanoparticles supported on magnesia, designed to promote heterolytic hydrogen splitting and surface ionic hydrogenation pathways. The catalyst, prepared through a one-pot procedure, promotes the hydrogenation of mono- and poly-cyclic arenes, as well as N- and S-heteroaromatics representative of fossil fuels components. Of particular significance are the superior activity and wider substrate scope of the catalyst, in relation to other known supported noble metals, and the excellent recyclability and long catalyst lifetime. Based on our experimental data, a dual-site catalyst structure and an associated dual-pathway mechanism are proposed, which may have interesting implications for the development of new poison-tolerant noble metal catalytic systems.
机译:与化石燃料的加氢处理有关,开发出能够促进芳族化合物的氢化同时抵抗含氮和硫的物质中毒的催化剂是非常令人感兴趣的。我们报告了一种由负载在氧化镁上的钌纳米颗粒组成的催化剂,旨在促进杂解氢分裂和表面离子加氢途径。通过一锅法制备的催化剂可促进单环和多环芳烃以及代表化石燃料组分的N和S杂芳烃的氢化。特别重要的是,相对于其他已知的负载贵金属,催化剂具有出色的活性和更宽的底物范围,以及出色的可回收性和长催化剂寿命。根据我们的实验数据,提出了一种双中心催化剂结构及相关的双通道机理,这可能对开发新型耐毒贵金属催化体系具有重要意义。

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