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超声反应器法从废弃食用油中合成生物柴油。

Synthesis of biodiesel from waste cooking oil using sonochemical reactors.

机构信息

Chemical Engineering Department, Institute of Chemical Technology, Matunga, Mumbai 400019, India.

出版信息

Ultrason Sonochem. 2010 Jun;17(5):827-32. doi: 10.1016/j.ultsonch.2010.02.010. Epub 2010 Feb 21.

Abstract

Investigation into newer routes of biodiesel synthesis is a key research area especially due to the fluctuations in the conventional fuel prices and the environmental advantages of biodiesel. The present work illustrates the use of sonochemical reactors for the synthesis of biodiesel from waste cooking oil. Transesterification of used frying oil with methanol, in the presence of potassium hydroxide as a catalyst has been investigated using low frequency ultrasonic reactor (20 kHz). Effect of different operating parameters such as alcohol-oil molar ratio, catalyst concentration, temperature, power, pulse and horn position on the extent of conversion of oil have been investigated. The optimum conditions for the transesterification process have been obtained as molar ratio of alcohol to oil as 6:1, catalyst concentration of 1 wt.%, temperature as 45 degrees C and ultrasound power as 200 W with an irradiation time of 40 min. The efficacy of using ultrasound has been compared with the conventional stirring approach based on the use of a six blade turbine with diameter of 1.5 cm operating at 1000 rpm. Also the purification aspects of the final product have been investigated.

摘要

研究新型生物柴油合成途径是一个关键的研究领域,特别是由于传统燃料价格的波动和生物柴油的环境优势。本工作说明了使用超声波反应器从废食用油合成生物柴油。在低频超声反应器(20 kHz)中,用过的煎炸油与甲醇在氢氧化钾作为催化剂的存在下进行酯交换反应。考察了醇油摩尔比、催化剂浓度、温度、功率、脉冲和喇叭位置等不同操作参数对油转化率的影响。得出了最佳的酯交换条件为醇油摩尔比为 6:1,催化剂浓度为 1wt.%,温度为 45°C,超声功率为 200 W,辐照时间为 40 min。使用超声波的效果与传统搅拌方法进行了比较,传统搅拌方法使用直径为 1.5 厘米的六叶涡轮在 1000 rpm 下运行。还研究了最终产品的净化方面。

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