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Hydrogenolysis of Glycerol to Propanediols Over Highly Active Ru-Re Bimetallic Catalysts

机译:高活性Ru-Re双金属催化剂上甘油氢解制丙二醇

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Several supported Ru-Re bimetallic catalysts (Ru-Re/SiO2, Ru-Re/ZrO2, Ru-Re/TiO2, Ru-Re/H-β, Ru-Re/H-ZSM5) and Ru monometallic catalysts (Ru/SiO2, Ru/ZrO2, Ru/TiO2, Ru/H-β, Ru/H-ZSM5) were prepared and their catalytic performances were evaluated in the hydrogenolysis of glycerol to propanediols (1,2-propanediol and 1,3-propanediol) with a batch type reactor (autoclave) under the reaction conditions of 160 °C, 8.0 MPa and 8 h. Compared with Ru monometallic catalysts, the Ru-Re bimetallic catalysts showed much higher activity in the hydrogenolysis of glycerol, and Re exhibited obvious promoting effect on the performance of the catalysts. The supported Ru monometallic catalysts and Ru-Re bimetallic catalysts were characterized by N2 adsorption/desorption, XRD, TEM-EDX, H2-TPR and CO chemisorption for obtaining some physicochemical properties of the catalysts, such as specific surface areas, crystal phases, morphologies/microstructure, reduction behaviors and dispersion of Ru metal. The results of XRD and CO chemisorption indicate that the addition of Re component could improve the dispersion of Ru species on supports. The measurements of H2-TPR revealed that the coexistence of Re and Ru components on supports changed the respective reduction behavior of Re or Ru alone on the supports, indicating the existence of synergistic effect between Ru and Re species on the bimetallic catalysts. The hydrogenolysis of some products (such as 1,2-propanediol, 1,3-propanediol, 1-propanol and 2-propanol) were also examined over Ru and Ru-Re catalysts for evaluating influence of Re-Re on the reaction routes during glycerol hydrogenolysis. The results showed that over Ru-Re catalysts, glycerol was favorable to be converted to 1,2-propanediol, but not favorable to ethylene glycol, while 1,2-propanediol and 1,3-propanediol were favorable to be converted to 1-propanol. The influence of glycerol concentration in its aqueous solution on the catalytic performance was also evaluated over Ru and Ru-Re catalysts.
机译:几种负载型Ru-Re双金属催化剂(Ru-Re / SiO2,Ru-Re / ZrO2,Ru-Re / TiO2,Ru-Re /H-β,Ru-Re / H-ZSM5)和Ru单金属催化剂(Ru / SiO2制备了Ru / ZrO2,Ru / TiO2,Ru /H-β,Ru / H-ZSM5,并在甘油加氢分解为丙二醇(1,2-丙二醇和1,3-丙二醇)中评估了它们的催化性能。在160℃,8.0MPa和8小时的反应条件下的间歇式反应器(高压釜)。与Ru单金属催化剂相比,Ru-Re双金属催化剂在甘油的氢解中表现出更高的活性,而Re对催化剂的性能表现出明显的促进作用。负载型Ru单金属催化剂和Ru-Re双金属催化剂通过N 2吸附/解吸,XRD,TEM-EDX,H2-TPR和CO化学吸附进行表征,以获得催化剂的一些理化性质,例如比表面积,晶相,形貌的微观结构,还原行为和钌金属的分散。 XRD和CO化学吸附的结果表明,添加Re组分可以改善Ru在载体上的分散。 H2-TPR的测量表明,载体上Re和Ru组分的共存改变了Re或Ru单独在载体上的各自还原行为,表明Ru和Re物种之间在双金属催化剂上存在协同作用。还通过Ru和Ru-Re催化剂检查了某些产物(如1,2-丙二醇,1,3-丙二醇,1-丙醇和2-丙醇)的氢解反应,以评估Re-Re对反应过程中反应路线的影响。甘油氢解。结果表明,与Ru-Re催化剂相比,甘油有利于转化为1,2-丙二醇,但不利于乙二醇,而1,2-丙二醇和1,3-丙二醇则有利于转化为1-。丙醇。还通过Ru和Ru-Re催化剂评价了其水溶液中甘油浓度对催化性能的影响。

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