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Epoxidation of Waste Cooking Palm Oil with Peracetic Acid Catalyzed by Sulfuric Acid

机译:用硫酸催化的过乙酸烹饪棕榈油的废物烹饪棕榈油环氧化

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摘要

The interest in the epoxidation of vegetable oils has increased significantly in recent years due to their sustainability, renewability, and biodegradability. In this study, waste cooking palm oil (WCPO) was epoxidized, which then can be introduced as a potential bio-based monomer. The epoxidation reaction was carried out by in situ generated peroxyacetic acid in the presence of a sulfuric acid catalyst in a tri-neck flask fitted with a condenser. Heating and stirring were provided by a heater-stirrer. In this study, the effect of the process operating parameters such as temperature (40– 60°C), catalyst loading (1.0-2.5%) and the molar ratio of hydrogen peroxide and acetic acid to the double bond (0.5-2.0) and (0.1-0.7) respectively, were investigated and the optimum conditions were established. A maximum relative conversion to oxirane of 56.8% and iodine conversion of 53.7% could be achieved at the optimum reaction conditions namely, temperature 60 °C within a reaction time of 4 hrs, catalyst loading 2.0%, hydrogen peroxide to unsaturation (1.5), acetic acid to unsaturation (0.5), and stirring speed of 900 rpm. The findings of this study provide keys to those interested in the epoxidation of WCPO for making valuable bio-based materials such as plasticizers, adhesives, and lubricants.
机译:由于其可持续性,可再生性和生物降解性,近年来植物油环氧化的兴趣显着增加。在这项研究中,蒸煮棕榈油(WCPO)的废物被环氧化,然后可以作为潜在的生物基单体引入。在具有冷凝器的三颈烧瓶中,在硫酸催化剂存在下,通过原位产生的过氧乙酸进行环氧化反应。加热和搅拌由加热器搅拌器提供。在该研究中,工艺操作参数如温度(40-60℃),催化剂负载(1.0-2.5%)和过氧化氢和乙酸的摩尔比的影响对双键(0.5-2.0)和乙酸(0.1-0.7)分别研究,建立了最佳条件。在最佳反应条件下,最大的相对转化为56.8%和53.7%的碘转化率为53.7%,即4小时的反应时间内的温度60℃,催化剂负载2.0%,过氧化氢(1.5),乙酸到不饱和度(0.5),搅拌速度为900rpm。本研究的结果为那些对WCPO环氧化的人提供了钥匙,用于制作有价值的生物基材料,如增塑剂,粘合剂和润滑剂。

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