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首页> 外文期刊>AIChE Journal >Kinetic Study of the Competitive Hydrogenation of Glycolaldehyde and Glucose on Ru/C with or Without AMT
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Kinetic Study of the Competitive Hydrogenation of Glycolaldehyde and Glucose on Ru/C with or Without AMT

机译:含或不含AMT的Ru / C上乙醇醛和葡萄糖竞争性加氢的动力学研究

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摘要

The competitive hydrogenation of glycolaldehyde and glucose over 1% Ru/C catalyst was studied in a batch reactor at 373-403 K and 6 MPa hydrogen pressure, with or without the presence of ammonium metatungstate (AMT). It was found that the presence of AMT retarded significantly the hydrogenation of both aldoses, and this suppressing effect was more pronounced on the glucose hydrogenation. The hydrogenation of glycolaldehyde occurred always preferentially to the glucose hydrogenation, with or without the presence of AMT. The kinetic data in the absence of AMT were well modeled based on Langmuir-Hinshelwood-Hougen-Watson kinetics assuming the surface reaction being rate-determining and noncompetitive adsorption of dissociatively chemisorbed hydrogen and aldose. However, in the presence of AMT, the complexing between AMT and aldose and the strong adsorption of AMT on Ru surface must be considered in the development of new kinetic model. The as-modified model described the data satisfactorily. (c) 2014 American Institute of Chemical Engineers AIChE J, 61: 224-238, 2015
机译:在间歇反应器中,在存在或不存在偏钨酸铵(AMT)的情况下,在373-403 K和6 MPa氢气压力下,研究了乙醇醛和葡萄糖在1%Ru / C催化剂上的竞争性氢化。发现AMT的存在显着地阻碍了两种醛糖的氢化,并且这种抑制作用在葡萄糖氢化上更加明显。在存在或不存在AMT的情况下,乙醇醛的氢化总是优先于葡萄糖氢化。在不存在AMT的情况下,基于Langmuir-Hinshelwood-Hougen-Watson动力学,可以很好地模拟动力学数据,前提是表面反应是速率决定性的,并且解离性化学吸附的氢和醛糖的吸附是非竞争性的。然而,在存在AMT的情况下,在开发新的动力学模型时必须考虑AMT与醛糖之间的络合以及AMT在Ru表面上的强吸附。修改后的模型令人满意地描述了数据。 (c)2014美国化学工程师学会AIChE J,61:224-238,2015

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