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Bifunctional temperature-sensitive ampiiiphiiic acidic ionic liquids for preparation of biodiesel

机译:用于制备生物柴油的双功能温度敏感性两性酸性离子液体

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摘要

Several water-stable bifunctional temperature-sensitive amphiphilic Bronsted-acidic ionic liquids with an alkane sulfonic acid group and a polyether group were synthesized through polyethylene glycol monomethylether as raw material. The properties and structures of the ionic liquids were experimentally characterized. Esterification of oleic acid with methanol to biodiesel was investigated in various bifunctional temperature-sensitive amphiphilic acidic ionic liquids. The amphiphilicity, temperature-sensitive, polymerization degree, acidity and activity correlation for the ionic liquids were studied. It was found that their structures were consistent with the designed structure and their purities were high. Among all these ionic liquids, the ionic liquid - MPEG-350-ILs showed the best catalytic activity that is near to that of concentrated sulfuric acid, which is ascribed to its strong Bronsted acidity and amphiphilicity. The catalytic activity of each ILs is dependent on the polymerization degree of polyether cation. The catalytic activity decreased with lengthening polyether chain of ionic liquids. These ionic liquids exhibited temperature-sensitive property. The produced biodiesel could be separated via simple decantation and the ionic liquids could be reused.
机译:以聚乙二醇单甲醚为原料,合成了几种具有烷磺酸基和聚醚基的水稳性双功能温敏两性布朗斯台德酸性离子液体。对离子液体的性质和结构进行了实验表征。在各种对温度敏感的两亲性两性酸性离子液体中,研究了用甲醇将油酸酯化为生物柴油。研究了离子液体的两亲性,温度敏感性,聚合度,酸度和活性相关性。发现它们的结构与设计的结构一致并且纯度高。在所有这些离子液体中,离子液体MPEG-350-ILs表现出最佳的催化活性,接近于浓硫酸,这归因于其强的布朗斯台德酸度和两亲性。每个IL的催化活性取决于聚醚阳离子的聚合度。随着离子液体聚醚链的延长,催化活性降低。这些离子液体显示出温度敏感性。所产生的生物柴油可以通过简单的倾析进行分离,并且离子液体可以重复使用。

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