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首页> 外文期刊>Journal of the American Oil Chemists' Society >Optimization of the Chemoenzymatic Epoxidation of Soybean Oil
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Optimization of the Chemoenzymatic Epoxidation of Soybean Oil

机译:大豆油化学酶环氧化反应的优化

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摘要

The lipase Candida antarctica (Novozyme 435) immobilized on acrylic resin was used as an unconventional catalyst for in situ epoxidation of soybean oil.The reactions were carried out in toluene.The peracid used for converting TG double bonds to oxirane groups was formed by reaction of FFA and hydrogen peroxide.The reaction conditions were optimized by varying the lipase concentration,solvent concentration,molar ratio of hydrogen peroxide to double bond,oleic acid concentration,and reaction temperature.The kinetic study showed that 100% conversion of double bonds to epoxides can be obtained after 4 h.The addition of free acids was not required for the reaction to proceed to conversions exceeding 80%,presumably owing to generation of FFA by hydrolysis of soybean oil.The enzyme catalyst was found to deteriorate after repeated runs.Paper no.J11234 in JAOCS 83,247-252 (March 2006).
机译:固定在丙烯酸树脂上的脂酶南极假丝酵母(Novozyme 435)被用作大豆油原位环氧化的非常规催化剂,反应在甲苯中进行,用于将TG双键转化为环氧乙烷基团的过酸是由通过改变脂肪酶浓度,溶剂浓度,过氧化氢与双键的摩尔比,油酸浓度和反应温度来优化反应条件,动力学研究表明双键可以100%转化为环氧化物在4小时后即可得到产物。反应进行到转化率超过80%时不需要添加游离酸,这大概是由于大豆油水解产生了FFA。发现酶催化剂在重复运行后会变质。 JAOCS 83,247-252中的.J11234(2006年3月)。

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