首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Effect of boron content on 1,4-butanediol production by hydrogenation of succinic acid over Re-Ru/BMC (boron-modified mesoporous carbon) catalysts
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Effect of boron content on 1,4-butanediol production by hydrogenation of succinic acid over Re-Ru/BMC (boron-modified mesoporous carbon) catalysts

机译:硼含量对Re-Ru / BMC(硼改性介孔碳)催化剂上琥珀酸加氢生产1,4-丁二醇的影响

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A series of Re-Ru bimetallic catalysts supported on mesoporous boron-modified carbon (denoted as Re-Ru/xBMC, x= B/C molar ratio) were prepared by a single-step surfactant-templating method and a subsequent incipient wetness impregnation method, and they were used for liquid-phase hydrogenation of succinic acid to 1,4-butandiol (BDO). The effect of boron addition on the catalytic activities and physicochemical properties of Re-Ru/xBMC catalysts was investigated. It was found that the addition of boron into carbon support affected surface area, metal dispersion, and reducibility of rhenium and ruthenium species in the Re-Ru/xBMC catalysts. It was also observed that boron species in carbon framework existed in several different phases such as substituted boron, partial oxidized boron, and boron oxide. In particular, the amount of substituted boron species was closely related to the hydrogen adsorption behavior of Re-Ru/xBMC catalysts. The amount of weak hydrogen-binding sites increased with increasing the amount of substituted boron species of the catalysts. Yield for BDO in the hydrogenation of succinic acid showed a volcano-shaped trend with respect to B/C molar ratio. This result was in good agreement with the amount of weak hydrogen-binding sites of the catalysts. It was revealed that TOFBDO increased with increasing the amount of weak hydrogen-binding sites of Re-Ru/xBMC catalysts. Among the catalysts, Re-Ru/0.04BMC with the largest amount of weak hydrogen-binding sites served as an efficient catalyst in the selective formation of BDO by hydrogenation of succinic acid. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过一步一步表面活性剂模板法和随后的初期湿法浸渍法制备了一系列负载在介孔硼改性碳上的Re-Ru双金属催化剂(表示为Re-Ru / xBMC,x = B / C摩尔比)。 ,它们用于琥珀酸的液相加氢成1,4-丁二醇(BDO)。研究了硼对Re-Ru / xBMC催化剂催化活性和理化性质的影响。发现在碳载体中添加硼会影响表面积,金属分散性以及Re-Ru / xBMC催化剂中rh和钌​​物种的还原性。还观察到碳骨架中的硼物种存在于几个不同的相中,例如取代的硼,部分氧化的硼和氧化硼。特别是,取代硼物种的数量与Re-Ru / xBMC催化剂的氢吸附行为密切相关。弱氢键合位点的数量随催化剂取代硼种类的增加而增加。相对于B / C摩尔比,琥珀酸加氢中BDO的产率显示出火山状的趋势。该结果与催化剂的弱氢结合位点的数量非常吻合。结果表明,TOFBDO随Re-Ru / xBMC催化剂弱氢键合位置的增加而增加。在这些催化剂中,具有大量弱氢键合位点的Re-Ru / 0.04BMC在通过琥珀酸加氢选择性形成BDO方面起着有效的催化剂的作用。 (C)2016 Elsevier B.V.保留所有权利。

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