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Alkali-catalyzed production of biodiesel from waste frying oils

机译:碱催化生物柴油生产废油脂

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The effects of the transesterification parameters on the yield and quality of the methyl esters (MEs) produced from waste frying oil (WFO) were investigated. A two-step alkali transesterification reaction followed by silica gel purification step was applied. The investigated reaction parameters were the methanol/oil molar ratio (6:1 and 9:1), the catalyst/oil weight ratio (1.0 and 1.5 mass %) and the type of catalyst (NaOH and KOH). The physical and chemical properties of the employed feedstock and the obtained biodiesel were determined in order to investigate the effects of both the properties of the WFO and the reaction parameters on the characteristics and yields of the product. It was found that the properties of the feedstock had a determinant effect on the physical and chemical properties of the MEs, as the majority of them did not differ significantly under the studied reaction parameters. However, the reaction parameters influenced the yields of the product. Higher yields were obtained with a 1.0 than with a 1.5 mass % catalyst to oil ratio. The increasing yield with decreasing catalyst/oil ratio was more pronounced with NaOH (9.15-14.35 %) than with KOH (2.84-6.45 %). When KOH was used as the catalyst, the yields were always higher (the mean yield was 94.86 %) in comparison to those obtained with NaOH (the mean was 84.28 %). Furthermore, the efficiency of KOH in conversion of WFO to purified MEs in comparison to NaOH was even more pronounced in the case of the higher methanol/oil ratio, i.e., for the 9:1 methanol/ oil ratio, the yield increase with KOH was about 2 times higher than the yield with NaOH, regardless of the applied catalyst/oil ratio.
机译:研究了酯交换参数对废油(WFO)产生的甲酯(MES)的产量和质量的影响。施加两步碱酯交换反应,然后施加硅胶纯化步骤。研究的反应参数是甲醇/油摩尔比(6:1和9:1),催化剂/油重比(1.0和1.5质量%)和催化剂(NaOH和KOH)的类型。测定所用原料和所得生物柴油的物理和化学性质,以研究WFO性能和反应参数对产物特性和产率的影响。结果发现原料的性质对ME的物理和化学性质具有决定性效果,因为它们在研究的反应参数下的大部分没有显着差异。然而,反应参数影响了产品的产率。用1.0比以1.5质量%的催化剂与油比获得更高的产率。随着NaOH(9.15-14.35%)的催化剂/油比的降低产量越来越大于KOH(2.84-6.45%)。当使用KOH作为催化剂时,与用NaOH(平均值为84.28%)相比,产率始终较高(平均产率为94.86%)。此外,在甲醇/油比的情况下,与NaOH相比,WFO转化为纯化的MES的KOH的效率甚至更明显,即9:1甲醇/油比,koh的产量增加无论施加的催化剂/油比如何,比NaOH产量高约2倍。

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