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Vegetable oil-based ionic liquid microemulsions and their potential as alternative renewable biolubricant basestocks.

机译:植物油基离子液体微乳液及其作为替代性可再生生物润滑剂基础油的潜力。

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This paper reports the successful formulation of microemulsions with vegetable oil as the continuous phase, room-temperature ionic liquid (IL) 1-butyl-3-methyl-imidazolium tetrafluoroborate as the polar phase, TritonX-100 as the surfactant, and 1-butanol as the cosurfactant. A pseudo-ternary phase diagram, dynamic light scattering data, UV-vis spectra, and kinematic viscosity measurements were employed to characterize and analyze the phase behavior and microstructure of the vegetable oil-based IL microemulsions. The tribological properties of the designed microemulsions were evaluated using a four-ball tester. The results confirmed the formation of an IL microemulsion containing vegetable oil. The designed petroleum-free microemulsions exhibit excellent viscosity-temperature characteristics and friction-reduction proprieties, indicating the tremendous potential of IL microemulsions as renewable biolubricant basestocks.
机译:本文报道了以植物油为连续相,室温离子液体(IL)1-丁基-3-甲基-咪唑四氟硼酸盐为极性相,TritonX-100作为表面活性剂和1-丁醇成功制备微乳液的方法作为辅助表面活性剂。伪三元相图,动态光散射数据,紫外可见光谱和运动粘度测量用于表征和分析植物油基IL微乳液的相行为和微观结构。使用四球测试仪评估设计的微乳液的摩擦学性能。结果证实了含有植物油的IL微乳液的形成。设计的无石油微乳液显示出优异的粘度-温度特性和降低摩擦的性能,表明IL微乳液作为可再生生物润滑剂基础油具有巨大潜力。

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