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首页> 外文期刊>Organic process research & development >Understanding and Control of Dimethyl Sulfate in a Manufacturing Process: Kinetic Modeling of a Fischer Esterification Catalyzed by H2SO4
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Understanding and Control of Dimethyl Sulfate in a Manufacturing Process: Kinetic Modeling of a Fischer Esterification Catalyzed by H2SO4

机译:理解和控制生产过程中的硫酸二甲酯:H2SO4催化的费希尔酯化反应的动力学模型

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摘要

The formation and fate of monomethyl sulfate (MMS) and dimethyl sulfate (DMS) were studied by proton NMR for a sulfuric acid catalyzed esterification reaction in methanol, The kinetic rate constants for DMS and MMS were determined at 65 °C by fitting time-dependent experimental data to a model using DynoChem. In refluxing methanol, sulfuric acid was converted to monomethyl sulfate (MMS) in nearly quantitative yield within 45 min. Once formed, the MMS underwent a reversible esterification reaction to form DMS, Dimethylsulfate reacted with methanol to regenerate MMS and form dimethyl ether. A byproduct of the esterification reaction was water, which further consumed DMS through hydrolysis. On the basis of derived rate constants, in refluxing methanol, DMS would not be expected to exceed 4 ppm in the reaction mixture at equilibrium. In the presence of the carboxylic acid substrate, DMS was not detected in the reaction mixture. The reaction pathways of this system have been systematically investigated, and the results of this study will be presented,
机译:通过质子核磁共振研究了甲醇中硫酸催化的酯化反应中硫酸单甲酯(MMS)和硫酸二甲酯(DMS)的形成和命运,并通过拟合时间依赖性来确定DMS和MMS的动力学速率常数在65°C下使用DynoChem将实验数据转换为模型。在回流的甲醇中,硫酸在45分钟内以几乎定量的产率转化为硫酸单甲酯(MMS)。一旦形成,MMS经历可逆的酯化反应以形成DMS,硫酸二甲酯与甲醇反应以再生MMS并形成二甲醚。酯化反应的副产物是水,水通过水解进一步消耗了DMS。基于导出的速率常数,在回流的甲醇中,预计反应混合物中DMS在平衡时不会超过4 ppm。在羧酸底物的存在下,在反应混合物中未检测到DMS。已对该系统的反应途径进行了系统的研究,并将给出本研究的结果,

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