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Selective hydrogenation of nitrostyrene to aminostyrene over Pt/TiO2 catalysts : Effects of pressurized carbon dioxide and catalyst preparation conditions

机译:在Pt / TiO2催化剂上将硝基苯乙烯选择性氢化为氨基苯乙烯:加压二氧化碳的影响和催化剂的制备条件

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摘要

The present work has studied the influence of CO2 pressurization on the hydrogenation of nitrostyrene (NS) using Pt/TiO2. With CO2 pressurization up to 12 MPa (CO2-dissolved expanded liquid (CXL) phase), the over-all reaction rate and the selectivity to aminostyrene (AS) increased. At higher CO2 pressures where all NB dissolved in scCO2 (scCO2-homogeneous phase), both of them decreased with increasing the CO2 pressure. The phase behavior was an important factor for the present reaction system. It was also found that the presence of pressurized CO2 gave higher selectivity to AS than in its absence at any conversion level. This was ascribed to retardation effects of dense phase CO2 on the hydrogenation of AS to ethylaniline. Competitive adsorption of nitro and vinyl groups was suggested to determine the product selectivity. FTIR measurements showed that the pressurized CO2 lowers the reactivity of the nitro group, and this effect is stronger in scCO2-homogeneous phase than in CXL phase, resulting in the lower AS selectivity in the former phase. Lower Pt loadings and higher catalyst reduction temperatures gave Pt/TiO2 catalysts more selective for the AS formation. FTIR measurements of adsorbed CO over the catalysts suggested that the presence of less-coordinated Pt atoms on edge, corner and kink sites was significant for the selective hydrogenation of NS to AS.
机译:目前的工作已经研究了CO2加压对使用Pt / TiO2的硝基苯乙烯(NS)加氢的影响。随着CO2加压至12 MPa(CO2溶解的膨胀液(CXL)相),整体反应速率和对氨基苯乙烯(AS)的选择性增加。在所有NB均溶解在scCO2(scCO2均相)中的较高CO2压力下,它们都随着CO2压力的增加而降低。相行为是当前反应系统的重要因素。还发现,与在任何转化水平下都不存在的情况相比,加压CO2的存在对AS的选择性更高。这归因于致密相CO 2对AS氢化成乙基苯胺的阻滞作用。建议通过竞争性吸附硝基和乙烯基来确定产物的选择性。 FTIR测量表明,加压的CO2降低了硝基的反应性,scCO2均相中的这种作用比CXL相中的作用更强,导致前一相的AS选择性较低。较低的Pt负载量和较高的催化剂还原温度使Pt / TiO2催化剂对AS的形成更具选择性。 FTIR对催化剂上吸附的CO的测量表明,边缘,角和扭结位点上未配位的Pt原子的存在对于将NS选择性氢化为AS具有重要意义。

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