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首页> 外文期刊>The Journal of Supercritical Fluids >Fluid phase equilibria during propylene carbonate synthesis from propylene oxide in carbon dioxide medium
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Fluid phase equilibria during propylene carbonate synthesis from propylene oxide in carbon dioxide medium

机译:在二氧化碳介质中由环氧丙烷合成碳酸亚丙酯期间的液相平衡

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摘要

In the present study the influence of the amount of carbon dioxide on the catalytic performance dur-ing the propylene carbonate synthesis from propylene oxide and CO2 was investigated. The reaction was performed in high-pressure batch autoclaves using immobilized l-hydroxyethyl-9-propyl-cyclic guanidinium bromide on SBA-15 (HEPCGBr/SBA-15) as catalyst in the absence of any co-catalyst. It was found that the yield was strongly dependent on the amount of CO2 added to the system and that the phase behavior strongly changes along the reaction pathway. The Cubic-Plus-Association (CPA) equation of state was used to predict the phase behavior during the reaction and the number and composition of coexisting phases in the multicomponent reaction system were determined. In accordance with the experimental data, the maximum conversion was achieved in the transition region between the two-and the one-phase region where a CO2-expanded reactant/product phase (larger volume due to the dis-solution of carbon dioxide in the liquid phase) is present. Optimal conditions for performing the reaction have been derived which requires consideration not only of the phase behavior of the starting phase but also of the mixture during reaction.
机译:在本研究中,研究了二氧化碳量对由环氧丙烷和CO2合成碳酸丙烯酯期间催化性能的影响。该反应在高压分批高压釜中进行,使用不存在任何助催化剂的情况下,在SBA-15(HEPCGBr / SBA-15)上固定化1-羟基乙基-9-丙基-环胍基溴化铵作为催化剂。发现收率在很大程度上取决于添加至系统的CO 2的量,并且相行为沿反应路径强烈变化。使用立方加缔合状态方程(CPA)预测反应过程中的相行为,并确定了多组分反应系统中共存相的数量和组成。根据实验数据,在两相和单相区域之间的过渡区域实现了最大转化率,在该区域中,CO2膨胀了反应物/产物相(由于二氧化碳在液体中的溶解,体积较大)相)存在。已经得出进行反应的最佳条件,其不仅需要考虑起始相的相行为,而且还需要考虑反应期间的混合物。

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