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首页> 外文期刊>Journal of nanoscience and nanotechnology >Hydrogenolysis of Glycerol to Propylene Glycol on Nanosized Cu-Zn-Al Catalysts Prepared Using Microwave Process
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Hydrogenolysis of Glycerol to Propylene Glycol on Nanosized Cu-Zn-Al Catalysts Prepared Using Microwave Process

机译:微波法制备的纳米Cu-Zn-Al催化剂上甘油氢解制丙二醇

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摘要

Cu-Zn-Al catalysts were prepared using microwave-assisted process and co-precipitation methods. The prepared catalysts were characterized by XRD, BET, XPS and TPD of ammonia and their catalytic activity for the hydrogenolysis of glycerol to propylene glycol was also examined. The XRD patterns of Cu/Zn/Al mixed catalysts show CuO and ZnO crystalline phase regardless of preparation method. The highest glycerol hydrogenolysis conversion is obtained with the catalyst having a Cu/Zn/Al ratio of 2:2:1. Hydrogen pre-reduction of catalysts significantly enhanced both glycerol conversions and selectivity to propylene glycol. The glycerol conversion increased with an increase of reaction temperature. However, the selectivity to propylene glycol increased with an increase of temperature, and then declined to 30.5% at 523 K.
机译:采用微波辅助工艺和共沉淀法制备了Cu-Zn-Al催化剂。通过氨的XRD,BET,XPS和TPD对所制备的催化剂进行了表征,并考察了它们对甘油氢解为丙二醇的催化活性。无论制备方法如何,Cu / Zn / Al混合催化剂的XRD图谱均显示CuO和ZnO晶相。使用Cu / Zn / Al比为2:2:1的催化剂可获得最高的甘油氢解转化率。催化剂的氢气预还原显着提高了甘油的转化率和对丙二醇的选择性。甘油转化率随反应温度的升高而增加。但是,对丙二醇的选择性随温度的升高而增加,然后在523 K下下降至30.5%。

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