首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Hydrogenolysis of glycerol over supported bimetallic Ni/Cu catalysts with and without external hydrogen addition in a fixed-bed flow reactor
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Hydrogenolysis of glycerol over supported bimetallic Ni/Cu catalysts with and without external hydrogen addition in a fixed-bed flow reactor

机译:在固定床流量反应器中,在含有外部氢气的支持的双金属Ni / Cu / Cu催化剂上的甘油氢解

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The role of high hydrogen pressure in the hydrogenolysis of glycerol to 1,2-propanediol has been studied extensively. Given the peculiar properties of hydrogen such as its inflammability and explosibility, the hydrogenolysis of glycerol without external hydrogen addition seems a more advantageous option. This study focuses on the conversion of glycerol to 1,2-propanediol over different supported bimetallic Ni/Cu catalysts in a fixed-bed flow reactor, usingin situhydrogen production and external hydrogen. Among the catalysts prepared, Ni/Cu/TiO2catalyst was observed to efficiently catalyze the hydrogenolysis of glycerol to 1,2-propanediol under N2pressure using 2-propanol as hydrogen source. This was due to the high Cu dispersion and Ni/Cu atomic ratio on the catalyst surface. However, the experimental results indicated that the effect of catalyst acid sites on glycerol hydrogenolysis was more noticeable when the reaction was performed under H2pressure. The metal active sites of the catalyst played a significant role in the hydrogen production and also affected the glycerol hydrogenolysis with hydrogen produced from 2-propanol catalytic transfer hydrogenation (CTH) and glycerol aqueous phase reforming (APR). The stability study revealed that the Ni/Cu/TiO2catalyst underwent serious deactivation during the hydrogenolysis of glycerol. The characterization results showed that the metal leaching and metal particles sintering were responsible for the catalyst deactivation when the glycerol hydrogenolysis was conducted using water as a solvent. However, the activity loss for reactions performed using 2-propanol as a solvent was mainly related to the metal particles sintering and the presence of adsorbed species on the catalyst surface.
机译:高氢气压力在甘油至1,2-丙二醇的氢解中的作用已经过度研究。鉴于氢的特殊性质如其易燃和解释性,甘油的氢解无需外部氢添加似乎是更有利的选择。该研究专注于在固定床流量反应器中的不同负载的双金属Ni / Cu / Cu催化剂在固定床流动反应器中转化甘油至1,2-丙二醇。在制备的催化剂中,观察到Ni / Cu / TiO 2催化剂以在使用2-丙醇作为氢气源的N2压缩下有效地催化甘油至1,2-丙二醇的氢解。这是由于催化剂表面上的高Cu分散和Ni / Cu / Cu原子比。然而,实验结果表明,当在H2压缩下进行反应时,催化剂酸位点对甘油氢的影响更明显。催化剂的金属活性位点在氢气产生中起显着作用,并且还影响了由2-丙醇催化转移氢化(CTH)和甘油水相改性产生的氢丙酯氢解(APR)。稳定性研究表明,在甘油的氢解过程中,Ni / Cu / TiO2催化剂在催化剂中进行了严重失活。表征结果表明,当使用水作为溶剂进行甘油氢解时,金属浸出和金属颗粒烧结负责催化剂失活。然而,使用2-丙醇作为溶剂进行的反应的活性损失主要与金属颗粒烧结和催化剂表面上的吸附物质有关。

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