首页> 外文期刊>Journal of Oleo Science >Bio-lubricants Derived from Waste Cooking Oil with Improved Oxidation Stability and Low-temperature Properties
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Bio-lubricants Derived from Waste Cooking Oil with Improved Oxidation Stability and Low-temperature Properties

机译:源自废食用油的生物润滑剂,具有改善的氧化稳定性和低温性能

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摘要

Waste cooking oil (WCO) was chemically modified via epoxidation using H_2O_2 followed by transesterification with methanol and branched alcohols (isooctanol, isotridecanol and isooctadecanol) to produce bio-lubricants with improved oxidative stability and low temperature properties. Physicochemical properties of synthesized bio-lubricants such as pour point (PP), cloud point (CP), viscosity, viscosity index (Ⅵ), oxidative stability, and corrosion resistant property were determined according to standard methods. The synthesized bio-lubricants showed improved low temperature flow performances compared with WCO, which can be attributing to the introduction of branched chains in their molecular structures. What's more, the oxidation stability of the WCO showed more than 10 folds improvement due to the elimination of -C=C-bonds in the WCO molecule. Tribological performances of these bio-lubricants were also investigated using four-ball friction and wear tester. Experimental results showed that derivatives of WCO exhibited favorable physicochemical properties and tribological performances which making them good candidates in formulating eco-friendly lubricants.
机译:通过使用H_2O_2进行环氧化,然后与甲醇和支链醇(异辛醇,异十三烷醇和异十八醇)进行酯交换反应,对废弃的食用油(WCO)进行了化学改性,以生产具有改善的氧化稳定性和低温性能的生物润滑剂。根据标准方法测定了合成生物润滑剂的物理化学性质,例如倾点(PP),浊点(CP),粘度,粘度指数(Ⅵ),氧化稳定性和耐腐蚀性。与WCO相比,合成的生物润滑剂显示出改善的低温流动性能,这可以归因于在其分子结构中引入了支链。此外,由于消除了WCO分子中的-C = C键,WCO的氧化稳定性提高了10倍以上。还使用四球摩擦磨损测试仪研究了这些生物润滑剂的摩擦学性能。实验结果表明,WCO衍生物具有良好的理化性能和摩擦学性能,使其成为配制环保型润滑剂的良好候选者。

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