Bio-Oils Research Unit, National Center for Agricultural Utilization Research, Agricultural Research Service, US Department of Agriculture, Peoria, Illinois 61604, United States.
J Agric Food Chem. 2011 May 11;59(9):4725-35. doi: 10.1021/jf104746v. Epub 2011 Mar 23.
Most industrial lubricants are derived from nonrenewable petroleum-based sources. As useful as these lubricants are, their unintended consequences are the pollution of the Earth's environment as a result of the slow degradation of the spent materials. Native seed oils, on the other hand, are renewable and are also biodegradable in the environment, but these oils often suffer a drawback in having lower thermal stability and a shorter shelf life because of the intrinsic -C═C- unsaturation in their structures. This drawback can be overcome, yet the inherent biodegradative property retained, by appropriate derivatization of the oil. Pursuant to this, this study investigated derivatized polyhydroxy milkweed oil to assess its suitability as lubricant. The milkweed plant is a member of the Asclepiadaceae, a family with many genera including the common milkweeds, Asclepias syriaca L., Asclepias speciosa L., Asclepias tuberosa L., etc. The seeds of these species contain mainly C-18 triglycerides that are highly unsaturated, 92%. The olefinic character of this oil has been chemically modified by generating polyhydroxy triglycerides (HMWO) that show high viscosity and excellent moisturizing characteristics. In this work, HMWO have been chemically modified by esterifying their hydroxyl groups with acyl groups of various chain lengths (C2-C5). The results of investigation into the effect of the acyl derivatives' chemical structure on kinematic and dynamic viscosity, oxidation stability, cold-flow (pour point, cloud point) properties, coefficient of friction, wear, and elastohydrodynamic film thickness are discussed.
大多数工业润滑剂都源自不可再生的石油基资源。尽管这些润滑剂非常有用,但它们也带来了一些负面影响,即由于废料的缓慢降解,导致地球环境受到污染。相比之下,天然植物油是可再生的,在环境中也是可生物降解的,但由于其结构中存在固有-C═C-不饱和性,这些油往往存在热稳定性较低和保质期较短的缺点。通过对油进行适当的衍生化,可以克服这一缺点,同时保留其固有的生物降解性。有鉴于此,本研究调查了衍生化的多羟基乳木果油,以评估其作为润滑剂的适用性。乳木果树是萝藦科的一员,该科有许多属,包括常见的乳木果属,如乳木果、美丽乳木果、乳木果等。这些物种的种子主要含有高度不饱和的 C-18 三酸甘油酯,含量高达 92%。这种油的烯烃性质已经通过生成具有高粘度和优异保湿特性的多羟基三酸甘油酯(HMWO)来进行化学修饰。在这项工作中,通过将其羟基与各种链长(C2-C5)的酰基酯化,对 HMWO 进行了化学修饰。探讨了酰基衍生物化学结构对运动和动力粘度、氧化稳定性、冷流(倾点、浊点)特性、摩擦系数、磨损和弹性流体动力膜厚度的影响。