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Conversion of biomass-derived sorbitol to glycols over carbon-materials supported Ru-based catalysts

机译:碳材料负载的Ru基催化剂将生物质衍生的山梨醇转化为乙二醇

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摘要

Ruthenium (Ru) supported on activated carbon (AC) and carbon nanotubes (CNTs) was carried out in the hydrogenolysis of sorbitol to ethylene glycol (EG) and 1,2-propanediol (1,2-PD) under the promotion of tungsten (WOx) species and different bases. Their catalytic activities and glycols selectivities strongly depended on the support properties and location of Ru on CNTs, owning to the altered metal-support interactions and electronic state of ruthenium. Ru located outside of the tubes showed excellent catalytic performance than those encapsulated inside the nanotubes. Additionally, the introduction of WOx into Ru/CNTs significantly improved the hydrogenolysis activities, and a complete conversion of sorbitol with up to 60.2% 1,2-PD and EG yields was obtained on RuWOx/CNTs catalyst upon addition of Ca(OH)2. Stability study showed that this catalyst was highly stable against leaching and poisoning and could be recycled several times.
机译:负载在活性炭(AC)和碳纳米管(CNTs)上的钌(Ru)在山梨糖醇加氢分解为乙二醇(EG)和1,2-丙二醇(1,2-PD)的条件下进行了钨的促进作用( WOx)种类和不同的碱基。它们的催化活性和二醇选择性在很大程度上取决于Ru的载体性质和在CNTs上的位置,这归因于钌与金属之间的相互作用以及电子状态的改变。与包裹在纳米管内部的Ru相比,位于管外部的Ru具有出色的催化性能。此外,将WOx引入Ru / CNTs可以显着改善氢解活性,在加入Ca(OH)2的RuWOx / CNTs催化剂上,山梨糖醇可以完全转化为山梨糖醇,转化率高达60.2%1,2-PD和EG 。稳定性研究表明,该催化剂对浸出和中毒具有很高的稳定性,可以循环使用几次。

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