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通过原位过氧乙酸机制对棕榈硬脂中不饱和脂肪酸进行催化环氧化。

Catalytic epoxidation of unsaturated fatty acids in palm stearin via in situ peracetic acids mechanism.

作者信息

Rahim Norin Hafizah, Jalil Mohd Jumain, Mubarak Nabisab Mujawar, Azmi Intan Suhada, Anbuchezhiyan Gnanasambandam

机构信息

Chemical Engineering Studies, College of Engineering, Universiti Teknologi MARA, Cawangan Johor, Kampus Pasir Gudang, 81750, Masai Johor, Malaysia.

Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Brunei, Bandar Seri Begawan, BE1410, Brunei Darussalam.

出版信息

Sci Rep. 2025 Feb 8;15(1):4789. doi: 10.1038/s41598-025-89399-x.

Abstract

Epoxidized vegetable oils present a viable substitute for polymers derived from petroleum. This research focuses on the impact of a process parameter on the epoxidation of palm stearin when zeolite ZSM-5 is used as a catalyst. This study synthesized peracetic acid as the oxidizing agent by combining hydrogen peroxide and acetic acid, adjusting molar ratios relative to palm stearin. The optimal relative conversion oxirane (RCO) percentage reached 43.06% at 70 °C, 200 rpm stirring speed, and 0.8 g of catalyst. The acetic acid to palm stearin molar ratio was 1:1, and the hydrogen peroxide to palm stearin ratio was 0.5:1. Both palm stearin and its epoxide derivative have been studied using Fourier-transform infrared spectroscopy, showing the appearance of an oxirane ring at a wavenumber of 1240 cm⁻¹. Kinetic modelling demonstrates that the simulation and experiment show a reasonable discrepancy, considering several assumptions that have been made. After 100 iterations, the reaction rate constant obtained as follows: [Formula: see text] =0.01 mol⋅L⋅min, [Formula: see text] = 1.85 mol⋅L⋅min, [Formula: see text] = 29.90 mol⋅L⋅min, and [Formula: see text] = 0.04 mol⋅L⋅min.

摘要

环氧化植物油是石油衍生聚合物的一种可行替代品。本研究聚焦于以ZSM - 5沸石为催化剂时,工艺参数对棕榈硬脂环氧化反应的影响。本研究通过将过氧化氢和乙酸混合合成过氧乙酸作为氧化剂,并相对于棕榈硬脂调整摩尔比。在70°C、200 rpm搅拌速度和0.8 g催化剂的条件下,环氧乙烷的最佳相对转化率(RCO)百分比达到43.06%。乙酸与棕榈硬脂的摩尔比为1:1,过氧化氢与棕榈硬脂的比例为0.5:1。已使用傅里叶变换红外光谱对棕榈硬脂及其环氧化衍生物进行了研究,结果表明在波数1240 cm⁻¹处出现了环氧乙烷环。动力学建模表明,考虑到所做的几个假设,模拟结果与实验结果存在合理差异。经过100次迭代后,得到的反应速率常数如下:[公式:见原文] = 0.01 mol⋅L⋅min,[公式:见原文] = 1.85 mol⋅L⋅min,[公式:见原文] = 29.90 mol⋅L⋅min,以及[公式:见原文] = 0.04 mol⋅L⋅min。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8a4/11807146/34b8ae41bf24/41598_2025_89399_Fig1_HTML.jpg

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