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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Lanthanum nanocluster/ZIF-8 for boosting catalytic CO2/glycerol conversion using MgCO3 as a dehydrating agent
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Lanthanum nanocluster/ZIF-8 for boosting catalytic CO2/glycerol conversion using MgCO3 as a dehydrating agent

机译:Lanthanum nanocluster / ZIF-8用于使用MgCO 3作为脱水剂促进催化CO 2 /甘油转化

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摘要

A lanthanum-modified zeolitic imidazolate framework (La/ZIF-8) was developed to produce glycerol carbonate using CO2 and glycerol as raw materials. La/ZIF-8 provides a high catalytic glycerol conversion efficiency owing to its surface-attached nanoclusters of La2O3, which can be viewed as La3+-O2- pairs that strengthen the Lewis basicity and acidity, and the large specific surface area of ZIF-8. The catalytic glycerol conversion and the yield of glycerol carbonate were 46.5% and 35.3%, respectively, using CH3CN as a dehydrating agent. With increase in the amount of CH3CN, the water molecules could react with CH3CN to reduce the selectivity. When an inorganic dehydrating agent, MgCO3, was used to physically adsorb and remove water molecules in the reaction, the selectivity of the reaction could be increased to over 95%, which is the highest ever reported. Reaction kinetics analysis also revealed that the activation energy of using MgCO3 (5.4 kJ mol(-1)) as a dehydrating agent is lower than that using CH3CN (7.8 kJ mol(-1)). Moreover, the La/ZIF-8 could be recycled and reused at least three times with high catalytic performance. This study provides an effective material with dual Lewis basicity and acidity for CO2/glycerol conversion and significantly improves the catalytic performance using an inorganic dehydrating agent.
机译:以二氧化碳和甘油为原料,制备了镧改性沸石咪唑酸盐骨架(La/ZIF-8)。La/ZIF-8由于其表面附着的La2O3纳米团簇(可被视为La3+-O2-对,可增强Lewis碱度和酸度)以及ZIF-8的大比表面积而提供高催化甘油转化效率。以CH3CN为脱水剂,甘油的催化转化率和碳酸甘油酯的收率分别为46.5%和35.3%。随着CH3CN用量的增加,水分子会与CH3CN发生反应,从而降低选择性。当使用无机脱水剂MgCO3物理吸附和去除反应中的水分子时,反应的选择性可以提高到95%以上,这是有史以来最高的。反应动力学分析还表明,使用MgCO3(5.4 kJ mol(-1))作为脱水剂的活化能低于使用CH3CN(7.8 kJ mol(-1))。此外,La/ZIF-8可循环使用至少三次,具有较高的催化性能。本研究为CO2/甘油转化提供了一种具有双重Lewis碱度和酸度的有效材料,并使用无机脱水剂显著提高了催化性能。

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