首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Transesterification of acid soybean oil for biodiesel production using lithium metasilicate catalyst prepared from diatomite
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Transesterification of acid soybean oil for biodiesel production using lithium metasilicate catalyst prepared from diatomite

机译:使用硅藻土制备的锂偏硅酸锂催化剂酸豆油酸豆油酯化

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摘要

Production of biodiesel from acid soybean oil using lithium metasilicate and its mixtures with zeolite ABW as catalysts was studied. Lithium metasilicate (Li2SiO3) and zeolite ABW were synthesized hydrothermally at 150 degrees C for one day by using diatomite and LiOH(aq) as starting materials. These solid catalysts were employed successfully to catalyze transesterification of acid soybean oil in excess methanol at 60 degrees C for biodiesel production. The soybean oil was spiked with oleic acid to obtain an acid value of 0.54 mg KOH/g oil, i.e. 3.6 times higher than the Taiwan's legal limit on the acid value of refined edible soybean oil (CNS 749). Consequently, the yields of biodiesel were above 95% in an hour by using lithium metasilicate catalysts. Furthermore, the spent catalysts of could be recycled and reused for at least for three consecutive cycles without significant deactivation observed in catalysis. With a decreasing loading of catalyst-to-oil to 30 wt%, the yield of biodiesel could still reach ca. 95% in one hour at 60 degrees C. (C) 2017 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:研究了使用锂离子油的生物柴油,使用锂酸锂及其用沸石ABW作为催化剂的混合物。通过使用硅藻土和LiOH(AQ)作为原料,在150℃下,在150℃下合成锂偏硅酸盐(Li2SiO3)和沸石ABW。成功地使用这些固体催化剂,以在60℃下催化过量甲醇中的酸大豆油的酯交换以进行生物柴油生产。用油酸掺入大豆油,得到0.54mg KOH / G油的酸值,即比台湾对精制食用豆油酸值的法律限制高3.6倍(CNS 749)。因此,通过使用锂偏硅酸锂催化剂,每小时生物柴油的产率高于95%。此外,可以将催化剂再循环并重复使用至少三个连续循环,而不会在催化中观察到显着失活。随着催化剂 - 油的负荷降低至30wt%,生物柴油的产量仍然可以到达CA.在60摄氏度的1小时内为95%C.(c)2017台湾化学工程师研究所。 elsevier b.v出版。保留所有权利。

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