Tumkot Laddawan, Quitain Armando T, Boonnoun Panatpong, Laosiripojana Navadol, Kida Tetsuya, Shotipruk Artiwan
Bio-Circular-Green-economy Technology & Engineering Center, BCGeTEC, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand.
Department of Applied Chemistry and Biochemistry, Faculty of Advanced Science and Technology, Kumamoto University, Kumamoto 860-8555, Japan.
ACS Omega. 2020 Sep 11;5(37):23542-23548. doi: 10.1021/acsomega.0c01660. eCollection 2020 Sep 22.
The synergy of sulfonated hydrothermal carbon and microwave (MW) irradiation was applied for the esterification of oleic acid with methanol (MeOH) to produce biodiesel. The effects of temperature, reaction time, ratio of oleic acid to methanol, and catalyst loading were investigated at a fixed MW power of 400 W. The addition of hexane, serving as a co-solvent and separator, was also investigated. The optimum conditions for the proposed process were oleic acid-to-methanol molar ratio of 1:5 and hexane-to-methanol ratio of 0.5 (v/v) in the presence of a 5 wt % catalyst, at 100 °C for 60 min, obtaining a 97% yield of oleic acid methyl ester. The addition of slight amounts of hexane resulted into an eightfold reduction in the amount of MeOH needed to obtain a yield above 90%, which normally required a MeOH-to-oil ratio of 40:1. This proposed novel approach could provide a more cost-effective method for the esterification of oil to produce biodiesel, that is, reactive separation utilizing carbon-based catalysts under MW irradiation.
将磺化热液碳与微波(MW)辐射的协同作用应用于油酸与甲醇(MeOH)的酯化反应以生产生物柴油。在400W的固定微波功率下,研究了温度、反应时间、油酸与甲醇的比例以及催化剂负载量的影响。还研究了用作共溶剂和分离剂的己烷的添加情况。该工艺的最佳条件是在5 wt%催化剂存在下,油酸与甲醇的摩尔比为1:5,己烷与甲醇的比例为0.5(v/v),在100℃下反应60分钟,油酸甲酯的产率达到97%。添加少量己烷可使获得高于90%产率所需的MeOH量减少八倍,而通常这需要MeOH与油的比例为40:1。这种新方法可为油的酯化生产生物柴油提供一种更具成本效益的方法,即在微波辐射下利用碳基催化剂进行反应分离。