铟180存在下间歇催化精馏工艺生产乙酸甲酯的实验研究

IF 0.5 4区 工程技术 Q4 CHEMISTRY, APPLIED
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引用次数: 0

摘要

在简易间歇式反应精馏装置上进行了醋酸与甲醇酯化反应,主要产物为乙酸甲酯,副产物为水。新型固体催化剂Indion 180用于酯化反应。产品醋酸甲酯有两种蒸馏方法,即顺序蒸馏和同时反应蒸馏。在简单的间歇蒸馏过程中,首先进行反应,直到蒸汽完全回流达到平衡,然后进行蒸馏,蒸汽在零回流下进行浓缩和单独收集。在第二种情况下,同时进行反应和蒸馏过程。在这些实验中,记录并分析了再沸器泡点温度的动态变化。实验结果表明,经气相色谱分析,反应后蒸馏的瞬时馏出物和同时反应蒸馏的乙酸甲酯的最大纯度分别为0.847和0.782。从这些研究中发现,间歇精馏装置本身可以通过监测再沸器的温度状况,以某种方式生产出醋酸甲酯生产所需的产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigations of the production of methyl acetate in batch catalytic distillation process in the presence of Indion 180
As a novel study, esterification of acetic acid with methanol has been studied in a simple batch reactive distillation apparatus to produce methyl acetate as main product and water as byproduct. Novel solid catalyst named Indion 180 has been used in this esterification process. The product methyl acetate can be distilled out in two ways namely sequential and simultaneous reactive distillation. In the simple distillation batch process, first the reaction is carried out till the equilibrium with total reflux of vapours, and then distillation is carried out where the vapours are condensed and collected separately with zero reflux. In the second case, simultaneous reaction and distillation processes are carried out. During these experiments, the dynamics of bubble point temperature of the reboiler is recorded and analyzed. From the experimental results it is found that the maximum purity of methyl acetate in instantaneous distillate of reaction followed by distillation and simultaneous reaction and distillation are 0.847 and 0.782, respectively, as analyzed by gas chromatography. From these studies it is found that a batch distillation apparatus itself can be used in certain way to produce the desired product for the case of methyl acetate production by monitoring the temperature regime of the reboiler.
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来源期刊
Indian Journal of Chemical Technology
Indian Journal of Chemical Technology 工程技术-工程:化工
CiteScore
0.90
自引率
20.00%
发文量
17
审稿时长
6-12 weeks
期刊介绍: Indian Journal of Chemical Technology has established itself as the leading journal in the exciting field of chemical engineering and technology. It is intended for rapid communication of knowledge and experience to engineers and scientists working in the area of research development or practical application of chemical technology. This bimonthly journal includes novel and original research findings as well as reviews in the areas related to – Chemical Engineering, Catalysis, Leather Processing, Polymerization, Membrane Separation, Pharmaceuticals and Drugs, Agrochemicals, Reaction Engineering, Biochemical Engineering, Petroleum Technology, Corrosion & Metallurgy and Applied Chemistry.
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