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Assessment of Oxidative Stability and Physical Properties of High Oleic Natural Esters

机译:高油酸天然酯的氧化稳定性和物理性质的评估

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Natural esters (triglycerides) possess desirable attributes such as the higher fire points and better environmental compatibility relative to petroleum-derived insulating mineral oil, as a result, the use of such natural esters is on the rise as insulating and heat transfer fluids in electrical devices such as transformers. However, natural esters differ significantly in chemical composition from mineral oils and are more prone to oxidation than mineral oils. High susceptibility of natural esters can be addressed in part through the use of natural esters with higher monounsaturated fatty acid-high oleic natural esters. Recently several high oleic acid soybeans have been introduced commercially. These include Plenish® (Pioneer / Dupont) Vistive Gold® (Monsanto / Bayer) and Soyleic® (Missouri Soybean Association). Both Plenish® and Vistive Gold® are obtained from GMO soybeans, while Soyleic® has been developed through more traditional plant breeding. The oleic acid content of the three natural esters was found to be 79%, 71%, and 81% respectively. While polyunsaturated fatty acid (linoleic and linolenic) contents of the three natural esters were found to be 10.3%, 22.5%, and 7.8% respectively. High oleic soybean oils along with canola oil with oleic content of 75% and polyunsaturated fatty acid content of 17.2% and generic soybean with oleic content of 24.5% and polyunsaturated fatty acid content of 60.0% were subjected to accelerated aging under conditions outlined in IEC 62770 2013. Test results showed that natural esters with higher oleic and lower polyunsaturated acid contents were more stable than the natural esters with lower oleic and higher polyunsaturated content. This stability was reflected in little or no increase in kinematic viscosity and little increase in dissolved acidity. These natural esters are therefore more suitable for dielectric applications where long-term stability is of paramount concern.
机译:天然酯(甘油三酸酯)具有所需的属性,例如,相对于石油衍生的绝缘矿物油,具有较高的着火点和更好的环境相容性,因此,此类天然酯的使用在电气设备中用作绝缘和传热流体的趋势正在上升例如变压器。但是,天然酯的化学组成与矿物油显着不同,并且比矿物油更容易氧化。天然酯的高敏感性可以部分地通过将天然酯与更高的单不饱和脂肪酸-高油酸天然酯一起使用来解决。最近,几种高油酸大豆已被商业引入。其中包括Plenish®(先锋/杜邦)VistiveGold®(孟山都/拜耳)和Soyleic®(密苏里州大豆协会)。 Plenish®和VistiveGold®均来自转基因大豆,而Soyleic®是通过更传统的植物育种而开发的。发现这三种天然酯的油酸含量分别为79%,71%和81%。三种天然酯的多不饱和脂肪酸(亚油酸和亚麻酸)含量分别为10.3%,22.5%和7.8%。高油酸大豆油,油酸含量为75%,多不饱和脂肪酸含量为17.2%的低芥酸菜籽油,油酸含量为24.5%和多不饱和脂肪酸含量为60.0%的普通大豆在IEC 62770概述的条件下进行加速老化2013。测试结果表明,具有较高油酸和较低多不饱和酸含量的天然酯比具有较低油酸和较高多不饱和含量的天然酯更稳定。这种稳定性反映在运动粘度几乎没有增加或溶解酸度几乎没有增加上。因此,这些天然酯更适合长期稳定性至关重要的介电应用。

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