Methyl Esterification of Oleic Acid in Supercritical Methanol with Methyl Formate

IF 0.6 4区 工程技术 Q4 ENERGY & FUELS Journal of The Japan Petroleum Institute Pub Date : 2021-07-01 DOI:10.1627/JPI.64.188
E. Minami, H. Kawamoto
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Abstract

Fatty acid methyl esters, which are used as biodiesel, can be produced by methyl esterification of fatty acids in supercritical methanol. However, in a reverse reaction, methyl esters are hydrolyzed to regenerate fatty acids due to the presence of water, which is produced by the esterification reaction, making it difficult to reduce the fatty acid content sufficiently. In this study, oleic acid was treated in supercritical methanol at 310 °C/20 MPa with a flow-type reactor by adding methyl formate to improve the yield of methyl ester. As a result, adding methyl formate improved the methyl ester yield approximately from 90 to 95 wt% compared with the treatment using methanol only. Methyl formate was hydrolyzed instead of fatty acid methyl esters, producing formic acid and methanol. Formic acid can be decomposed into gases such as H2 and CO2 by thermal decomposition in supercritical methanol. As these reactions consume water, removing it from the reaction system, the reaction equilibrium was considered to be shifted in the direction to improve the methyl ester yield.
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油酸与甲酸甲酯在超临界甲醇中的甲基酯化反应
脂肪酸甲酯可在超临界甲醇中进行甲基酯化反应,生产用于生物柴油的脂肪酸甲酯。然而,在逆向反应中,由于酯化反应产生的水存在,甲酯被水解再生脂肪酸,难以充分降低脂肪酸含量。本研究采用流动式反应器,在310℃/20 MPa的超临界甲醇条件下,通过添加甲酸甲酯来提高油酸甲酯的收率。结果表明,与仅使用甲醇处理相比,添加甲酸甲酯可将甲酯收率提高约90%至95%。以甲酸甲酯代替脂肪酸甲酯水解生成甲酸和甲醇。甲酸在超临界甲醇中通过热分解可分解为H2和CO2等气体。由于这些反应消耗水,将水从反应体系中除去,因此可以认为反应平衡方向发生了改变,以提高甲酯的产率。
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来源期刊
Journal of The Japan Petroleum Institute
Journal of The Japan Petroleum Institute 工程技术-工程:石油
CiteScore
1.70
自引率
10.00%
发文量
29
审稿时长
>12 weeks
期刊介绍: “Journal of the Japan Petroleum Institute”publishes articles on petroleum exploration, petroleum refining, petrochemicals and relevant subjects (such as natural gas, coal and so on). Papers published in this journal are also put out as the electronic journal editions on the web. Topics may range from fundamentals to applications. The latter may deal with a variety of subjects, such as: case studies in the development of oil fields, design and operational data of industrial processes, performances of commercial products and others
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