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在超声作用下使用非均相固体碱催化剂从不可食用的水飞蓟油生产生物柴油。

Biodiesel production from non-edible Silybum marianum oil using heterogeneous solid base catalyst under ultrasonication.

作者信息

Takase Mohammed, Chen Yao, Liu Hongyang, Zhao Ting, Yang Liuqing, Wu Xiangyang

机构信息

School of Chemistry and Chemical Engineering, Jiangsu University, 301 Xuefu Rd., 212013 Zhenjiang, Jiangsu, China.

School of the Environment, Jiangsu University, 301 Xuefu Rd., 212013 Zhenjiang, Jiangsu, China.

出版信息

Ultrason Sonochem. 2014 Sep;21(5):1752-62. doi: 10.1016/j.ultsonch.2014.04.003. Epub 2014 Apr 16.

Abstract

The aim of this study is to investigate modified TiO2 doped with C4H4O6HK as heterogeneous solid base catalyst for transesterification of non-edible, Silybum marianum oil to biodiesel using methanol under ultrasonication. Upon screening the catalytic performance of modified TiO2 doped with different K-compounds, 0.7 C4H4O6HK doped on TiO2 was selected. The preparation of the catalyst was done using incipient wetness impregnation method. Having doped modified TiO2 with C4H4O6HK, followed by impregnation, drying and calcination at 600 °C for 6 h, the catalyst was characterized by XRD, FTIR, SEM, BET, TGA, UV and the Hammett indicators. The yield of the biodiesel was proportional to the catalyst basicity. The catalyst had granular and porous structures with high basicity and superior performance. Combined conditions of 16:1 molar ratio of methanol to oil, 5 wt.% catalyst amount, 60 °C reaction temperature and 30 min reaction time was enough for maximum yield of 90.1%. The catalyst maintained sustained activity after five cycles of use. The oxidative stability which was the main problem of the biodiesel was improved from 2.0 h to 3.2h after 30 days using ascorbic acid as antioxidant. The other properties including the flash point, cetane number and the cold flow ones were however, comparable to international standards. The study indicated that Ti-0.7-600-6 is an efficient, economical and environmentally, friendly catalyst under ultrasonication for producing biodiesel from S. marianum oil with a substantial yield.

摘要

本研究的目的是研究掺杂C4H4O6HK的改性TiO2作为多相固体碱催化剂,在超声作用下,将非食用的水飞蓟油与甲醇进行酯交换反应制备生物柴油。在筛选了掺杂不同K化合物的改性TiO2的催化性能后,选择了掺杂0.7 C4H4O6HK的TiO2。采用初湿浸渍法制备催化剂。用C4H4O6HK对改性TiO2进行掺杂,然后进行浸渍、干燥,并在600℃下煅烧6 h,通过XRD、FTIR、SEM、BET、TGA、UV和哈米特指示剂对催化剂进行表征。生物柴油的产率与催化剂的碱度成正比。该催化剂具有颗粒状和多孔结构,碱度高,性能优异。甲醇与油的摩尔比为16:1、催化剂用量为5 wt.%、反应温度为60℃、反应时间为30 min的组合条件足以使最大产率达到90.1%。该催化剂在使用五个循环后仍保持持续活性。使用抗坏血酸作为抗氧化剂,生物柴油的主要问题氧化稳定性在30天后从2.0 h提高到3.2 h。然而,其他性能包括闪点、十六烷值和低温流动性与国际标准相当。该研究表明,Ti-0.7-600-6是一种高效、经济且环境友好的催化剂,在超声作用下能从水飞蓟油中大量生产生物柴油。

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