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首页> 外文期刊>Catalysis science & technology >Effect of SiO2 support properties on the performance of Cu-SiO2 catalysts for the hydrogenation of levulinic acid to gamma valerolactone using formic acid as a hydrogen source
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Effect of SiO2 support properties on the performance of Cu-SiO2 catalysts for the hydrogenation of levulinic acid to gamma valerolactone using formic acid as a hydrogen source

机译:二氧化硅支持属性的影响Cu-SiO2催化剂的性能加氢乙酰丙酸γvalerolactone使用甲酸作为氢源

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摘要

Vapor phase catalytic transfer hydrogenation of aqueous levulinic acid (LA) with formic acid (FA) as a hydrogen source was carried out over copper loaded on to several SiO2 supports having different physicochemical properties. The SiO2 supports and Cu-SiO2 catalysts with different support properties were characterized by XRD, TPR, XPS, NH3-TPD and UV-vis techniques to evaluate the copper species and its interaction with the support. The SiO2 support alone showed lower LA conversion and low selectivity to GVL whereas Cu-SiO2 catalysts were found to show high conversion and selectivity to the desired product with formic acid as the hydrogen source. The difference in the activities and product selectivity among different copper supported silica appears to be a complex function of acidity and the nature of copper species in the Cu-SiO2 catalysts. No direct correlation was observed between a specific catalyst property such as acidity and pore size, and the performance of the Cu-SiO2 catalysts. From the characterization, it appears that the species responsible for higher activity and selectivity to GVL are monomeric partially oxidized copper species in a strong interaction with the support in combination with a higher number of acid sites, both of which are present in Cu-SiO2-Q6. Cu-SiO2-Q6 showed the highest conversion and selectivity of 66 and 81%, respectively, under optimized conditions.
机译:气相催化转移加氢水乙酰丙酸(LA)甲酸(FA)作为氢源进行了铜装上几个二氧化硅支持不同的物理化学性质。支持和Cu-SiO2催化剂不同支持属性通过XRD,TPR、XPS、NH3-TPD和常用技术评估铜物种及其交互与支持。较低的转换和低选择性GVL而Cu-SiO2催化剂被发现显示高转化率和选择性所需的产品以甲酸为氢源。不同的活动和产品不同铜之间的选择性支持硅似乎是一个复杂的功能酸度和铜物种的本质Cu-SiO2催化剂。属性之间观察到一个特定的催化剂酸度和孔隙大小等Cu-SiO2催化剂的性能。表征,似乎这个物种负责较高的活性和选择性GVL单体的部分氧化铜矿物种的强相互作用的支持结合更多的酸网站,这两个在Cu-SiO2-Q6存在。Cu-SiO2-Q6显示转换和最高选择性分别为81%和66优化条件。

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