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首页> 外文期刊>日本エネルギー学会誌 >Overall Transesterification Rate of Oil in Methanol-Oil Two-Phase System: A Simultaneous Diffusion-Reaction Model
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Overall Transesterification Rate of Oil in Methanol-Oil Two-Phase System: A Simultaneous Diffusion-Reaction Model

机译:甲醇 - 油两相系统中的油脂总体酯交换率:同时扩散 - 反应模型

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摘要

This short paper aims to clarify the main factor controlling overall transesterification rate of vegetable oil(triglycerides)with methanol catalyzed by homogeneous acid catalyst. In this reaction system, methanol droplets are dispersed in oil continuous phase. Most of the catalyst is existing in methanol droplets. The authors formulated a simultaneous diffusion-reaction model by focusing on the following processes:(1)dissolving of oil into methanol droplets at the oil-methanol interface,(2)inward diffusion of oil in methanol droplets, and(3)simultaneous transesterification of oil with the inward diffusion. In order to prove this model, firstly, the intrinsic transesterification kinetics were determined in methanol/oil/2-butanone/sulfuric acid system at 298, 308, and 323 K. 2-Butanone and sulfuric acid were used as a co-solvent and a catalyst, respectively. Secondly, transesterification of oil with methanol catalyzed by sulfuric acid was carried out in ordinary two-phase system at 298, 308, and 323 K. The authors successfully simulated the two-phase reaction results from the homogeneous kinetics by applying the model developed in this paper. It was found that the overall transesterification rate is controlled by the intrinsic kinetics.
机译:本短文旨在阐明通过均相酸催化剂催化的甲醇控制植物油(甘油三酯)总体酯交换率的主要因素。在该反应体系中,甲醇液滴分散在油连续相中。大多数催化剂存在于甲醇液滴中。作者通过专注于以下方法,制定了同时扩散 - 反应模型:(1)将油溶解在油 - 甲醇界面的甲醇液滴中,(2)在甲醇液滴中的油中的向内扩散,(3)同时酯交换油与向内扩散。为了证明该模型,首先,在298,308和323k的甲醇/油/ 2-丁酮/硫酸系统中测定固有酯交换动力学。使用2-丁酮和硫酸作为共溶剂和硫酸分别是催化剂。其次,在298,308和323k的普通两相系统中在普通的两相系统中催化氟酸的油酯化。作者通过应用该模型成功地模拟了来自均匀动力学的两相反应结果纸。发现整体替代术率由内在动力学控制。

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