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首页> 外文期刊>ChemCatChem >Hydrodeoxygenation of Phenol and Derivatives over an Ionic Liquid-Like Copolymer Stabilized Nanocatalyst in Aqueous Media
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Hydrodeoxygenation of Phenol and Derivatives over an Ionic Liquid-Like Copolymer Stabilized Nanocatalyst in Aqueous Media

机译:在含水介质中,在离子液体样共聚物稳定的纳米催化剂上通过苯酚和衍生物的加氢脱氧。

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Using phenolic bio-oil as feedstock for sustainable production of alkane fuels is of great significance. Here, the hydrodeoxygenation of phenol and its derivatives has been systematically investigated in aqueous media with a dual-functional catalyst system consisting of water-soluble, ionic liquid-like copolymer A-stabilized nanocatalysts and the mineral acid H3PO4. The developed Ru/A-H3PO4 catalyst system achieved a complete phenol conversion with cyclohexane selectivity higher than 99%, making it by far one of the most efficient systems for phenol hydrodeoxygenation. Mercury poisoning experiments revealed that the insitu generated Ru nanoparticles are true a heterogeneous catalyst for hydrogenation. The catalytic activity of metal site for phenol hydrodeoxygenation to cyclohexane decreased with the order of Ru>Rh>Pt Pd. Our findings also demonstrated the delicate balance between activity and stability of ionic liquid-like copolymer-stabilized nanocatalysts. The research highlights an efficient catalyst system of transforming phenols into alkanes.
机译:使用酚类生物油作为用于可持续生产烷烃燃料的原料具有重要意义。此处,在水性介质中系统地研究了苯酚及其衍生物的加氢脱氧,其双官能催化剂体系包括水溶性的离子液体样共聚物α-稳定的纳米催化剂和无机酸H3PO4。开发的Ru / A-H3PO4催化剂体系实现了具有高于99%的环己烷选择性的完全酚类转化率,使其成为最有效的苯酚加氢氧基的系统之一。水银中毒实验表明,Insitu产生的Ru纳米颗粒是真正的氢化催化剂。用Ru> RH> Pt Pd的顺序降低了苯酚加氢酰胺的金属位点的催化活性。我们的研究结果还证明了离子液体状共聚物稳定的纳米催化剂的活性和稳定性之间的微妙平衡。该研究突出了将酚转化为烷烃的有效催化剂体系。

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