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采用响应面法对麻疯树(Madhuca indica)油生产生物柴油的工艺进行优化。

Process optimization for biodiesel production from mahua (Madhuca indica) oil using response surface methodology.

作者信息

Ghadge Shashikant Vilas, Raheman Hifjur

机构信息

Agricultural & Food Engineering Department, Indian Institute of Technology, Kharagpur 721 302, India.

出版信息

Bioresour Technol. 2006 Feb;97(3):379-84. doi: 10.1016/j.biortech.2005.03.014.

Abstract

A central composite rotatable design was used to study the effect of methanol quantity, acid concentration and reaction time on the reduction of free fatty acids content of mahua oil during its pretreatment for making biodiesel. All the three variables significantly affected the acid value of the product, methanol being the most effective followed by reaction time and acid catalyst concentration. Using response surface methodology, a quadratic polynomial equation was obtained for acid value by multiple regression analysis. Verification experiments confirmed the validity of the predicted model. The optimum combinations for reducing the acid level of mahua oil to less than 1% after pretreatment was 0.32 v/v methanol-to-oil ratio, 1.24% v/v H2SO4 catalyst and 1.26 h reaction time at 60 degrees C. After the pretreatment of mahua oil, transesterification reaction was carried out with 0.25 v/v methanol-to-oil ratio (6:1 molar ratio) and 0.7% w/v KOH as an alkaline catalyst to produce biodiesel. The fuel properties of mahua biodiesel so obtained complied the requirements of both the American and European standards for biodiesel.

摘要

采用中心复合旋转设计研究了甲醇用量、酸浓度和反应时间对麻疯树油制备生物柴油预处理过程中游离脂肪酸含量降低的影响。这三个变量均对产物的酸值有显著影响,其中甲醇的影响最为显著,其次是反应时间和酸催化剂浓度。采用响应面法,通过多元回归分析得到了酸值的二次多项式方程。验证实验证实了预测模型的有效性。在60℃下,将麻疯树油酸值预处理至低于1%的最佳组合为:甲醇与油体积比0.32 v/v、硫酸催化剂浓度1.24% v/v、反应时间1.26 h。麻疯树油预处理后,以甲醇与油体积比0.25 v/v(摩尔比6:1)和0.7% w/v氢氧化钾作为碱性催化剂进行酯交换反应制备生物柴油。所得麻疯树生物柴油的燃料性能符合美国和欧洲生物柴油标准的要求。

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