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Metathesized palm oil & novel polyol derivatives: Structure, chemical composition and physical properties

机译:易位的棕榈油和新型多元醇衍生物:结构,化学组成和物理性质

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Metathesized palm oils are now a major source of fine chemicals; in particular due to the commercial production of 1-decene and 3,4-dodecene by cross metathesis of 1-butene and palm oil. This process results in the generation of a modified palm oil triacylglycerol (PMTAG) by-product, which has not been sufficiently studied. In this communication, the compositional analysis of PMTAG produced at a commercial scale is reported for the first time, and reveals that a percentage of the unsaturated fatty acids were shortened at the location of the double bond, producing a lower molecular mass TAG oil with terminal double bonds, and less steric hindrance compared to the natural oil. Furthermore, although PMTAG presented physical properties close to highly unsaturated vegetable oils, it retained a two-portion composition similar to palm oil, making its fractionation feasible with existing industrial methods. The epoxidation followed by hydroxylation of PMTAG resulted in a polyol comprising non-functional structures inherited from PMTAG and structures with diols, tetrols and hexols in which 50% of the hydroxyl groups were in terminal positions. The OH value (155 mg KOH/g), thermal stability (similar to 370 degrees C), melting profile (offset temperature similar to 45 degrees C) and viscosity characteristics qualify the PMTAG polyol as a suitable substrate for the manufacture of a variety of materials including waxes, cosmetics and polyurethanes. (C) 2016 Elsevier B.V. All rights reserved.
机译:易位的棕榈油现在是精细化学品的主要来源。特别是由于通过1-丁烯和棕榈油的交叉复分解而商业生产1-癸烯和3,4-十二碳烯。此过程导致生成改性棕榈油三酰基甘油(PMTAG)副产物,对此尚未进行充分研究。在此通报中,首次报道了以商业规模生产的PMTAG的成分分析,结果表明不饱和脂肪酸的百分比在双键位置被缩短,从而产生了具有较低分子量的TAG油。双键,与天然油相比,位阻更少。此外,尽管PMTAG的物理性质接近于高度不饱和的植物油,但它保留了类似于棕榈油的两部分组成,使其可以通过现有的工业方法进行分馏。环氧化后再进行PMTAG的羟基化,形成了一种多元醇,该多元醇包含从PMTAG继承的非官能结构以及具有50%羟基位于末端位置的二醇,四元醇和己醇的结构。 OH值(155 mg KOH / g),热稳定性(约370摄氏度),熔融曲线(偏移温度类似于45摄氏度)和粘度特性使PMTAG多元醇成为制造各种聚合物的合适基材材料包括蜡,化妆品和聚氨酯。 (C)2016 Elsevier B.V.保留所有权利。

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