Rahman Mariam Abdul, Mubarak Nabisab Mujawar, Azmi Intan Suhada, Jalil Mohd Jumain
Chemical Engineering Studies, College of Engineering, Universiti Teknologi MARA Cawangan Pulau Pinang, Kampus Permatang Pauh, Perai, Malaysia.
Petroleum and Chemical Engineering, Faculty of Engineering, Universiti Teknologi Brunei, Bandar Seri Begawan, BE1410, Brunei Darussalam.
Sci Rep. 2023 Sep 19;13(1):15470. doi: 10.1038/s41598-023-42879-4.
Epoxides were primarily derived from petroleum-based sources. However, there has been limited research on optimizing the process parameters for epoxidized palm oil-derived oleic acid, resulting in its underutilization. Therefore, this study aimed to optimize the catalytic epoxidation of palm oleic acid concerning the oxirane content by applying ion exchange resin as a catalyst. Epoxidized oleic acid was produced using in-situ-formed performic acid by combining formic acid as the oxygen carrier with hydrogen peroxide as the oxygen donor. The findings revealed that the optimal reaction conditions for producing epoxidized oleic acid with the highest oxirane content were an Amberlite IR-120 catalyst loading of 0.9 g, a molar ratio of formic acid to oleic acid of 1:1., and a molar ratio of hydrogen peroxide to oleic acid of 1:1.1. By employing these optimal conditions, the maximum relative conversion of palm oleic acid to oxirane was achieved at 85%. The reaction rate constants (k) based on the optimized epoxidized oleic acid are determined as follows: k = 20 mol L min, k = 2 mol L min, and k = 20 mol L min. The findings validated the kinetic model by showing good agreement between the simulation and experimental data.
环氧化合物主要来源于石油基原料。然而,关于优化环氧化棕榈油衍生油酸的工艺参数的研究有限,导致其未得到充分利用。因此,本研究旨在通过应用离子交换树脂作为催化剂,优化棕榈油酸催化环氧化反应中环氧乙烷含量。通过将甲酸作为氧载体与过氧化氢作为氧供体相结合,原位生成过氧甲酸来制备环氧化油酸。研究结果表明,制备环氧乙烷含量最高的环氧化油酸的最佳反应条件为:Amberlite IR - 120催化剂负载量为0.9 g,甲酸与油酸的摩尔比为1:1,过氧化氢与油酸的摩尔比为1:1.1。采用这些最佳条件,棕榈油酸向环氧乙烷的最大相对转化率达到85%。基于优化后的环氧化油酸确定的反应速率常数(k)如下:k = 20 mol·L⁻¹·min⁻¹,k = 2 mol·L⁻¹·min⁻¹以及k = 20 mol·L⁻¹·min⁻¹。研究结果通过模拟数据与实验数据之间的良好一致性验证了动力学模型。