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Preparation of Epoxidized Fatty Acid Methyl Ester with in situ Auto-Catalyzed Generation of Performic Acid and the Influence of Impurities on Epoxidation

机译:原位自催化生成甲酸制备环氧化脂肪酸甲酯及其杂质对环氧化的影响

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摘要

Epoxidized fatty acid methyl ester (EFAME) is a renewable and biodegradable plasticizer that can be produced from various vegetable oils and even waste oils. In this work, refined soybean oil (RSO) was first converted to fatty acid methyl ester (FAME) by enzymatic transesterification, followed by epoxidation with performic acid in situ generated via auto-catalyzed reaction of formic acid with hydrogen peroxide. Effects of several factors on epoxidation of RSO FAME were investigated, and the conditions were optimized by response surface methodology. Impacts of several potential impurities on epoxidation were further investigated. It was found that the effects of triglyceride (RSO), glycerol and free fatty acid could be negligible. However, mineral acid such as sulfuric acid could significantly improve the rate of epoxidation, but the cleavage of epoxy group was also strengthened, resulting in lower epoxy value of the EFAME product. Surfactants showed significant negative effects on epoxidation. The feasibility of producing EFAME from waste cooking oil was further investigated. Compared with RSO, waste oil needed a second-stage epoxidation to epoxidize most of the double bonds, but obtained poorer epoxy value with lower degree and selectivity of epoxidation and EFAME yield.
机译:环氧化脂肪酸甲酯(EFAME)是一种可再生和可生物降解的增塑剂,可以从各种植物油甚至废油中生产。在这项工作中,首先通过酶促酯交换反应将精制大豆油(RSO)转化为脂肪酸甲酯(FAME),然后通过甲酸与过氧化氢的自动催化反应,用甲酸原位环氧化。研究了几种因素对RSO FAME环氧化的影响,并通过响应面法优化了条件。进一步研究了几种潜在杂质对环氧化的影响。发现甘油三酸酯(RSO),甘油和游离脂肪酸的影响可以忽略不计。但是,无机酸(例如硫酸)可以显着提高环氧化速率,但环氧基的裂解也得到加强,导致EFAME产品的环氧值降低。表面活性剂对环氧化显示出显着的负面影响。进一步研究了由废食用油生产EFAME的可行性。与RSO相比,废油需要进行第二阶段的环氧化才能使大多数双键环化,但环氧值较低,环氧化的程度和选择性以及EFAME收率较低。

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