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Synthesis reactivity and application studies for different biolubricants

机译:不同生物润滑剂的合成反应性及应用研究

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摘要

Vegetable oils have different unique properties owing to their unique chemical structure. Vegetable oils have a greater ability to lubricate and have higher viscosity indices. Therefore, they are being more closely examined as base oil for biolubricants and functional fluids. In spite of their many advantages, vegetable oils suffer from two major drawbacks of inadequate oxidative stability and poor low-temperature properties, which hinder their utilization as biolubricant base oils. Transforming alkene groups in fatty acids to other stable functional groups could improve the oxidative stability, whereas reducing structural uniformity of the oil by attaching alkyl side chains could improve the low-temperature performance. In that light, the epoxidation of unsaturated fatty acids is very interesting as it can provide diverse side chains arising from the mono- or di-epoxidation of the unsaturated fatty acid. Oxirane ring opening by an acid-catalyzed reaction with a suitable reagent provides interesting polyfunctional compounds.
机译:植物油由于其独特的化学结构而具有不同的独特性质。植物油具有更高的润滑能力和更高的粘度指数。因此,它们正在作为生物润滑剂和功能流体的基础油而受到更严格的检验。尽管植物油具有许多优点,但它们仍具有两个主要缺点,即氧化稳定性不足和低温性能差,这阻碍了它们用作生物润滑油基础油。将脂肪酸中的烯烃基团转变为其他稳定的官能团可以提高氧化稳定性,而通过连接烷基侧链降低油的结构均匀性可以提高低温性能。因此,不饱和脂肪酸的环氧化非常令人感兴趣,因为它可以提供由不饱和脂肪酸的单环氧化或双环氧化产生的各种侧链。通过与合适的试剂进行酸催化反应进行的环氧乙烷开环提供了令人感兴趣的多官能化合物。

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