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首页> 外文期刊>Chemical Engineering and Processing >Degradation of the oxirane ring of epoxidized vegetable oils in a liquid-liquid-solid heterogeneous reaction system
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Degradation of the oxirane ring of epoxidized vegetable oils in a liquid-liquid-solid heterogeneous reaction system

机译:液-液-固非均相反应体系中环氧化植物油环氧乙烷环的降解

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摘要

The main oxirane-ring opening reactions that occur during the manufacture of epoxidized vegetable oils using a strongly acidic,gel-type ion exchange resin (IER) (Amberlite IR-120,8% crosslinking) were analyzed.By using a heterogeneous liquid-liquid-solid model,the reactivity on each phase was individually assessed,taking into account each transport step as well as the relevant partition equilibria.The combined results on the attack onto the oxirane ring of epoxidized vegetable oils by either hydrogen peroxide (H_2O_2) or solvated acetic acid (AA) indicate that under 'regular' process conditions these attacks proceed in the kinetic regime;that is,they are not mass-transfer controlled.The study indicated that most of the degradation occurs on the catalyst and,also,confirmed that the external surface protons of the IER are the main responsibles of the deleterious degradation of the oxirane ring as,in both cases,the degradation rate was directly proportional to the available external area of the catalyst.
机译:分析了使用强酸性凝胶型离子交换树脂(IER)(Amberlite IR-120,8%交联)制备环氧化植物油时发生的主要环氧乙烷开环反应。 -固体模型,考虑了每个运输步骤以及相关的分配平衡,分别评估了每个相的反应性。综合结果表明,过氧化氢(H_2O_2)或溶剂化对环氧化植物油的环氧乙烷环的攻击乙酸(AA)表明,在“常规”过程条件下,这些攻击以动力学方式进行;也就是说,它们不受传质控制。研究表明,大部分降解发生在催化剂上,并且确认IER的外表面质子是环氧乙烷环有害降解的主要原因,因为在两种情况下,降解速率均与可用的外部面积成正比催化剂。

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