首页> 外文期刊>Química Nova >SELECTIVE HYDROGENOLYSIS OF GLYCEROL TO PROPYLENE GLYCOL IN A CONTINUOUS FLOW TRICKLE BED REACTOR USING COPPER CHROMITE AND Cu/Al 2 O 3 CATALYSTS
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SELECTIVE HYDROGENOLYSIS OF GLYCEROL TO PROPYLENE GLYCOL IN A CONTINUOUS FLOW TRICKLE BED REACTOR USING COPPER CHROMITE AND Cu/Al 2 O 3 CATALYSTS

机译:铜铬铁矿和Cu / Al 2 O 3催化剂在连续流动滴流床反应器中选择性地将甘油水解为丙二醇

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The glycerol hydrogenolysis reaction was performed in a continuous flow trickle bed reactor using a water glycerol feed and both copper chromite and Cu/Al 2 O 3 catalysts. The commercial copper chromite had a higher activity than the laboratory prepared Cu/Al 2 O 3 and was used for most of the tests. Propylene glycol was the main product with both catalysts, acetol being the main by-product. It was found that temperature is the main variable influencing the conversion of glycerol. When the state of the glycerol-water reactant mixture was completely liquid, at temperatures lower than 190 ?oC, conversion was low and deactivation was observed. At reaction temperatures of 210-230 ?oC the conversion of glycerol was complete and the selectivity to propylene glycol was stable at about 60-80% all throughout the reaction time span of 10 h, regardless of the hydrogen pressure level (1 to 20 atm). These optimal values could not be improved significantly by using other different reaction conditions or increasing the catalyst acidity. At higher temperatures (245-250 ?oC) the conversion was also 100%. Under reaction conditions at which copper chromite suffered deactivation, light by-products and surface deposits were formed. The deposits could be completely burned at 250 ?oC and the catalyst activity fully recovered.
机译:甘油氢解反应在连续滴流床反应器中使用甘油水进料以及亚铬酸铜和Cu / Al 2 O 3催化剂进行。市售亚铬酸铜具有比实验室制备的Cu / Al 2 O 3更高的活性,并用于大多数测试。丙二醇是两种催化剂的主要产物,丙酮醇是主要的副产物。发现温度是影响甘油转化的主要变量。当甘油-水反应物混合物的状态完全为液体时,在低于190°C的温度下,转化率较低,并且观察到失活。在210-230°C的反应温度下,甘油的转化完成,并且在10小时的整个反应时间范围内,对丙二醇的选择性均稳定在约60-80%,而与氢气压力水平(1至20 atm)无关。 )。通过使用其他不同的反应条件或增加催化剂的酸度,这些最佳值不能显着提高。在较高温度(245-250℃)下,转化率也为100%。在亚铬酸铜失活的反应条件下,形成了轻质副产物和表面沉积物。沉积物可在250°C下完全燃烧,催化剂活性完全恢复。

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