School of Chemistry and Materials Science, Ludong University, Yantai 264025, PR China.
School of Chemistry and Materials Science, Ludong University, Yantai 264025, PR China.
Bioresour Technol. 2014 Dec;173:266-271. doi: 10.1016/j.biortech.2014.09.087. Epub 2014 Sep 28.
Biodiesel production has become an intense research area because of rapidly depleting energy reserves and increasing petroleum prices together with environmental concerns. This paper focused on the optimization of the catalytic performance in the esterification reaction of oleic acid for biodiesel production over the bifunctional catalyst organotriphosphonic acid-functionalized ferric alginate ATMP-FA. The reaction parameters including catalyst amount, ethanol to oleic acid molar ratio and reaction temperature have been optimized by response surface methodology (RSM) using the Box-Behnken model. It was found that the reaction temperature was the most significant factor, and the best conversion ratio of oleic acid could reach 93.17% under the reaction conditions with 9.53% of catalyst amount and 8.62:1 of ethanol to oleic acid molar ratio at 91.0 °C. The research results show that two catalytic species could work cooperatively to promote the esterification reaction, and the bifunctional ATMP-FA is a potential catalyst for biodiesel production.
由于能源储备的迅速枯竭、石油价格的不断上涨以及对环境的关注,生物柴油的生产已经成为一个热门的研究领域。本文主要研究了在双功能催化剂有机膦酸功能化海藻酸钠 ATMP-FA 的酯交换反应中,催化油酸制备生物柴油的催化性能优化。通过 Box-Behnken 模型的响应面法(RSM)对催化剂用量、乙醇与油酸摩尔比和反应温度等反应参数进行了优化。结果表明,反应温度是最重要的因素,在催化剂用量为 9.53%,乙醇与油酸摩尔比为 8.62:1,反应温度为 91.0°C 的条件下,油酸的最佳转化率可达 93.17%。研究结果表明,两种催化物种可以协同作用,促进酯化反应,双功能 ATMP-FA 是一种有潜力的生物柴油生产催化剂。