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Preliminary studies on the interesterification of soybean oil with methyl acetate catalyed by layered materials”

机译:分层材料催化甲基乙酸甲基甲酯的初步研究“

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The partial replacement of diesel oil with biodiesel has contributed to the increased availability of glycerin on the world market. About 10 m3 of glycerol is obtained for every 100 m3 of triacylglycerides (main component of vegetable oils and animal fats) processed in the main technological route for biodiesel production, the alkaline transesterification in homogeneous medium. Of course, the glycerin obtained as a coproduct in the process needs to be harnessed in complementary processes. This is usually possible after the glycerin undergoes several purification processes. With the intention of avoiding such complementary processes, we are proposing the synthesis of biodiesel by interesterification of soybean oil with methyl acetate, a technological route that makes it possible to obtain glycerol in the form of triacetin, that is, already chemically modified. The catalysts used in the process were the layered double hydroxide (HDL) Zn2 Al/NO3 and the commercial zinc stearate (EZ), a layered carboxylate. Both these layered materials had not yet been tested as catalysts in interesterification reactions. Conversions were obtained in fatty acid methyl esters of 50.8 ?± 4.2% and 82.9 ?± 1.0% (m m-1) using the EZ and HDL catalysts, respectively; when reactions were conducted using 5% catalyst (m m-1), for 10 h reaction and molar ratio methyl acetate: soybean oil of 24:1.
机译:柴油与生物柴油的部分替代促进了甘油在世界市场上增加的可用性。在生物柴油生产主要技术途径中加工的每100m 3的三酰基甘油酯(植物油和动物脂肪的主要成分)获得约10m 3的甘油得到,均质介质中的碱性酯交换。当然,在该过程中获得的甘油在互补过程中需要利用。在甘油经历几种纯化过程之后,通常可以。随着避免这种互补的方法,我们通过含有甲基甲酯的豆油,一种技术途径提出了生物柴油的合成,这使得可以以三循环素的形式获得甘油,即已经化学修饰。该方法中使用的催化剂是层状双氢氧化物(HDL)Zn2 Al / No3和商业锌硬脂酸锌(EZ),层状羧酸盐。两种层状材料尚未测试为环境中的催化剂。使用EZ和HDL催化剂分别在50.8×4.2%和82.9×1.0%(M m-1)的脂肪酸甲酯中获得转化。使用5%催化剂(M M-1)进行反应,10小时反应和摩尔比乙酸甲酯:豆油24:1。

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