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One-pot synthesis of chemically modified vegetable oils

机译:一锅合成化学改性植物油

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Vegetable oils are promising candidates as substitutes for petroleum base oils in lubricant applications, such as total loss lubrication, military applications, and outdoor activities. Although vegetable oils have some advantages, they also have poor oxidation and low temperature stability. One of the ways to address these issues is chemical modification of fatty acid chain of triglyceride. We report a one-pot synthesis of a novel class of chemically modified vegetable oils from epoxidized triacylglycerols and various anhydrides. In an anhydrous solvent, boron trifluoride etherate is used as catalyst to simultaneously open the oxirane ring and activate the anhydride. The reaction was monitored and products confirmed by NMR, FTIR, GPC, and TGA analysis. Experimental conditions were optimized for research quantity and laboratory scale-up (up to 4 lbs). The resultant acyl derivatives of vegetable oil, having diester substitution at the sites of unsaturation, have potential in formulation of industrial fluids such as hydraulic fluids, lubricants, and metal working fluids.
机译:在润滑油应用中,例如全损耗润滑,军事应用和户外活动中,植物油有望替代石油基础油。尽管植物油具有一些优势,但它们的氧化性和低温稳定性也很差。解决这些问题的方法之一是对甘油三酸酯的脂肪酸链进行化学修饰。我们报告了一锅从环氧化的三酰基甘油和各种酸酐的化学改性植物油的新型合成。在无水溶剂中,将三氟化硼醚化物用作催化剂,以同时打开环氧乙烷环并活化酸酐。监测反应并通过NMR,FTIR,GPC和TGA分析确认产物。针对研究数量和实验室规模(最大4磅)优化了实验条件。所得的植物油的酰基衍生物在不饱和位点具有二酯取代作用,在配制工业流体如液压油,润滑剂和金属加工液方面具有潜力。

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