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Effective conversion of rapeseed oil to biodiesel fuel in the presence of basic activated carbon catalysts

机译:在碱性活性炭催化剂存在下有效地将菜籽油转化为菜籽油至生物柴油燃料

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摘要

The heterogeneous base-catalysed transesterification of rapeseed oil was performed in the presence of modified activated carbons to obtain biodiesel fuel. The basic strength of the initial carbon sample was enhanced through its treatment with different N-containing agents such as gaseous ammonia, aniline, melamine, benzene-1,4-diamine, aminosilane, or guanidine derivatives. The materials obtained were characterised using elemental and textural analysis, potentiometric titration, NMR, XPS, and DTG measurements. The transesterification of rapeseed oil was performed with methanol in a batch reactor under elevated pressure at 130 degrees C. The superior activities in the reaction were shown by carbons modified with ammonia and by samples obtained via immobilization of 1,5,7-triazabicyclo[4.4.0]dec-5-ene (guanidine derivative) on the carbon surface. The most active materials showed high total basicity and were able to efficiently catalyse the reaction, giving fatty acid methyl ester (FAME) yields comparable to those obtained in the process with NaOH used as a homogeneous catalyst. Reusability tests were also conducted.
机译:在改性活性炭存在下,菜籽油经异种碱催化酯交换反应制备生物柴油。通过使用气态氨、苯胺、三聚氰胺、苯-1,4-二胺、氨基硅烷或胍衍生物等不同的含氮试剂处理,初始碳样品的基本强度得到增强。使用元素和结构分析、电位滴定、NMR、XPS和DTG测量对获得的材料进行了表征。菜籽油的酯交换反应是在130℃的高压下,在间歇式反应器中用甲醇进行的。用氨改性的碳和通过在碳表面固定1,5,7-三氮杂双环[4.4.0]十二碳-5-烯(胍衍生物)获得的样品显示了该反应的优越活性。最具活性的材料显示出较高的总碱度,并且能够有效地催化反应,使脂肪酸甲酯(FAME)的产率与使用NaOH作为均相催化剂的过程中获得的产率相当。还进行了可重用性测试。

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