Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan.
Bioresour Technol. 2013 Oct;145:362-9. doi: 10.1016/j.biortech.2012.12.157. Epub 2013 Jan 4.
The non-catalytic transesterification of refined sunflower oil with supercritical methanol, in the presence of carbon dioxide, was conducted in a tubular reactor at temperatures from 553.2 to 593.2K and pressures up to 25.0 MPa. The FAME yield can be achieved up to about 0.70 at 593.2 K and 10.0 MPa in 23 min with methanol:oil of 25:1 in molar ratio. The effect of adding CO2 on the FAME yield is insignificant. The kinetic behavior of the non-catalytic esterification and transesterification of oleic acid or waste cooking oil (WCO) with supercritical methanol was also investigated. By using the supercritical process, the presence of free fatty acid (FFA) in WCO gives positive contribution to FAME production. The FAME yield of 0.90 from WCO can be achieved in 13 min at 573.2K. The kinetic data of supercritical transesterification and esterifaication were correlated well with a power-law model.
在管式反应器中,在二氧化碳存在下,用超临界甲醇对精炼葵花籽油进行非催化酯交换反应,温度为 553.2 至 593.2K,压力高达 25.0 MPa。在 593.2 K 和 10.0 MPa 下,甲醇与油的摩尔比为 25:1 时,23 分钟内甲酯的收率可达约 0.70。添加 CO2 对甲酯收率的影响不显著。还研究了油酸或废食用油(WCO)与超临界甲醇的非催化酯化和酯交换的动力学行为。通过使用超临界工艺,WCO 中的游离脂肪酸(FFA)对 FAME 的生成有积极的贡献。在 573.2K 下,13 分钟内可从 WCO 中获得 0.90 的 FAME 收率。超临界酯交换和酯化的动力学数据与幂律模型很好地相关。