Jeong Gwi-Taek, Yang Hee-Seung, Park Don-Hee
Engineering Research Institute, Chonnam National University, Gwangju, Republic of Korea.
Bioresour Technol. 2009 Jan;100(1):25-30. doi: 10.1016/j.biortech.2008.05.011. Epub 2008 Jun 24.
In an effort to optimize the reaction conditions of biodiesel production from lard, response surface methodology was applied, and the effects of five-level-three-factors and their reciprocal interactions were assessed. A total of 20 individual experiments were conducted, and were designed to study reaction temperature, catalyst amount, and oil-to-methanol molar ratio. A statistical model predicted that the highest conversion yield of lard biodiesel would be 98.6%, at the following optimized reaction conditions: a reaction temperature of 65 degrees C, a catalyst amount of 1.26%, and an oil-to-methanol molar ratio of 7.5:1, with a 20-min reaction time. Using these optimal factor values under experimental conditions in three independent replicates, an average content of 97.8+/-0.6% was achieved, and this value was well within the range predicted by the model. The quality of biodiesel produced from lard at the optimum reaction conditions satisfied the relevant quality standards, with the exception of cold filter plugging point.
为了优化从猪油生产生物柴油的反应条件,应用了响应面法,并评估了五水平三因素及其相互作用的影响。总共进行了20次独立实验,旨在研究反应温度、催化剂用量和油醇摩尔比。一个统计模型预测,在以下优化反应条件下,猪油生物柴油的最高转化率将为98.6%:反应温度65℃,催化剂用量1.26%,油醇摩尔比7.5:1,反应时间20分钟。在实验条件下使用这些最佳因子值进行三次独立重复实验,平均含量达到97.8±0.6%,该值完全在模型预测的范围内。在最佳反应条件下由猪油生产的生物柴油质量除冷滤点外均符合相关质量标准。