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The hydrogenation of cinnamaldehyde by supported aqueous phase (SAP) catalyst of RhCl(TPPTS)(3): Selectivity, kinetic and mass transfer aspects

机译:RhCl(TPPTS)(3)的负载水相(SAP)催化剂氢化肉桂醛的选择性,动力学和传质方面

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The hydrogenation of trans-cinnamaldehyde catalysed by a supported aqueous phase catalyst of RhCl(TPPTS)3 [TPPTS: trisodium salt of tris(m-sulfophenyl)phosphine] on silica was investigated in terms of the product selectivity, reaction kinetics and mass transfer characteristics. The hydrogenation is selective at the C=C bonds in cinnamaldehyde giving hydrocinnamaldehyde as the main product. To achieve high selectivity (99.9%), it is necessary to employ a low initial concentration of cinnamaldehyde (0.076M). The selectivity also depended on the reaction operating conditions (pressure, temperature, catalyst loading) and the water content property of the SAP catalyst. Optimum water content of the SAP catalyst giving maximum activity was obtained when the pore volume of the supports was completely filled with water. The overall order of reaction was first-order and therefore the conventional three-phase slurry model was applied to the SAP system for the mass transfer analysis. The gas-liquid mass transfer and the reaction resistances were the controlling steps of comparable significance, while liquid-solid mass transfer resistance was negligible in this system. Under similar conditions, the SAP catalyst gave a lower reaction rate than the analogous biphasic catalyst. (c) 2006 Elsevier Ltd. All rights reserved.
机译:研究了RhCl(TPPTS)3 [TPPTS:三(间-磺基苯基)膦的三钠盐]在硅胶上的负载水相催化剂催化的反肉桂醛的氢化反应,研究了产物的选择性,反应动力学和传质特性。 。氢化在肉桂醛中的C = C键处是选择性的,以氢化肉桂醛为主要产物。为了实现高选择性(99.9%),必须使用低浓度的肉桂醛(0.076M)。选择性还取决于反应操作条件(压力,温度,催化剂负载量)和SAP催化剂的含水量特性。当载体的孔体积完全充满水时,可获得最大活性的SAP催化剂的最佳含水量。反应的总顺序是一阶的,因此将常规的三相浆料模型应用于SAP系统进行传质分析。气液传质和反应阻力是相当重要的控制步骤,而液-固传质阻力在该系统中可忽略不计。在相似的条件下,SAP催化剂的反应速率低于类似的双相催化剂。 (c)2006 Elsevier Ltd.保留所有权利。

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