首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influence of Support for Ru and Water Role on Product Selectivity in the Vapor-Phase Hydrogenation of Levulinic Acid to gamma-Valerolactone: Investigation by Probe-Adsorbed Fourier Transform Infrared Spectroscopy
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Influence of Support for Ru and Water Role on Product Selectivity in the Vapor-Phase Hydrogenation of Levulinic Acid to gamma-Valerolactone: Investigation by Probe-Adsorbed Fourier Transform Infrared Spectroscopy

机译:Ru和水作用支持对乙酰丙酮酸气相氢化的产物选择性的影响:探针吸附傅里叶变换红外光谱研究

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摘要

Ru supported on activated carbon, Al2O3, and MgO was assessed for the hydrogenation of levulinic acid (LA) to gamma-valerolactone (GVL). Role of H2O on the hydrogenation activity of Ru was studied by probe-adsorbed diffuse-reflectance infrared Fourier transform (DRIFT) spectroscopy. Ru supported on activated carbon showed a maximum productivity of 1.18 kg(GVL) kg(catalyst)(-1) h(-1) with an insignificant loss in the activity after 72 h of continuous operation in the presence of H2O. Using pure LA, GVL rate was decreased by an order of magnitude (0.12 kg(GVL) kg(catalyst)(-1) h(-1)) within 6 h of reaction time. The physicochemical characteristics of the catalysts were examined by temperature-programmed desorption of NH3, CO pulse chemisorption, H-2-temperature-programmed reduction, and X-ray photoelectron spectroscopy techniques. H2O-adsorbed DRIFT spectroscopic data revealed the reversible generation of surface -OH groups when aqueous LA was used as the substrate; consequently, Ru/C catalyst stability was also improved. Finally, on the basis of the kinetic and in situ spectroscopic data, a plausible surface-reaction mechanism is proposed for the vapor-phase LA hydrogenation to GVL in the presence of H2O over the carbon-supported Ru catalyst.
机译:Ru支持活性炭,Al 2 O 3和MgO的Ru被评估乙酰丙酸(La)的氢化至γ-戊酮(GV1)。通过探针吸附的漫射反射率红外傅里叶变换(漂移)光谱研究了H2O对Ru的氢化活性的作用。 Ru支持活性炭的Ru显示最大的生产率为1.18kg(gv1)kg(催化剂)( - 1)h(-1),在H 2 O存在下连续操作后的62小时后的活性损失是微不足道的。在反应时间的6小时内,使用纯LA,通过幅度(0.12kg(gv1)kg( - 1)h(-1))在6小时内降低GV1速率。通过温度编程的NH 3,Co脉冲化学吸附,H-2 - 温度编程的降低和X射线光电子体光谱技术来检查催化剂的物理化学特性。 H2O-吸附的漂移光谱数据显示,当使用La水溶液作为基材时,揭示了表面-OH基团的可逆产生;因此,Ru / C催化剂稳定性也得到改善。最后,在动力学和原位光谱数据的基础上,提出了一种合理的表面反应机理,用于在H 2 O在碳载rU催化剂上存在汽相La氢化至GV1。

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