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基于酯交换棕榈油精的多元醇的合成以及由此多元醇制备硬质聚氨酯

Synthesis of Transesterified Palm Olein-Based Polyol and Rigid Polyurethanes from this Polyol.

作者信息

Arniza Mohd Zan, Hoong Seng Soi, Idris Zainab, Yeong Shoot Kian, Hassan Hazimah Abu, Din Ahmad Kushairi, Choo Yuen May

机构信息

Malaysian Palm Oil Board, 6 Persiaran Instusi, Bandar Baru Bangi, 43000 Kajang, Selangor Malaysia.

出版信息

J Am Oil Chem Soc. 2015;92(2):243-255. doi: 10.1007/s11746-015-2592-9. Epub 2015 Feb 3.

Abstract

Transesterification of palm olein with glycerol can increase the functionality by introducing additional hydroxyl groups to the triglyceride structure, an advantage compared to using palm olein directly as feedstock for producing palm-based polyol. The objective of this study was to synthesize transesterified palm olein-based polyol via a three-step reaction: (1) transesterification of palm olein, (2) epoxidation and (3) epoxide ring opening. Transesterification of palm olein yielded approximately 78 % monoglyceride and has an hydroxyl value of approximately 164 mg KOH g. The effect of formic acid and hydrogen peroxide concentrations on the epoxidation reaction was studied. The relationships between epoxide ring-opening reaction time and residual oxirane oxygen content and hydroxyl value were monitored. The synthesized transesterified palm olein-based polyol has hydroxyl value between 300 and 330 mg KOH g and average molecular weight between 1,000 and 1,100 Da. On the basis of the hydroxyl value and average molecular weight of the polyol, the transesterified palm olein-based polyol is suitable for producing rigid polyurethane foam, which can be designed to exhibit desirable properties. Rigid polyurethane foams were synthesized by substituting a portion of petroleum-based polyol with the transesterified palm olein-based polyol. It was observed that by increasing the amount of transesterified palm olein-based polyol, the core density and compressive strength were reduced but at the same time the insulation properties of the rigid polyurethane foam were improved.

摘要

棕榈油精与甘油进行酯交换反应,可通过在甘油三酯结构中引入额外的羟基来提高其功能性,这相较于直接使用棕榈油精作为生产棕榈基多元醇的原料具有优势。本研究的目的是通过三步反应合成酯交换反应的棕榈油精基多元醇:(1)棕榈油精的酯交换反应,(2)环氧化反应,以及(3)环氧环开环反应。棕榈油精的酯交换反应产生了约78%的单甘油酯,其羟值约为164mg KOH/g。研究了甲酸和过氧化氢浓度对环氧化反应的影响。监测了环氧环开环反应时间与残余环氧乙烷氧含量和羟值之间的关系。合成的酯交换反应棕榈油精基多元醇的羟值在300至330mg KOH/g之间,平均分子量在1000至1100Da之间。基于多元醇的羟值和平均分子量,酯交换反应的棕榈油精基多元醇适用于生产硬质聚氨酯泡沫,可设计使其具有所需性能。通过用酯交换反应的棕榈油精基多元醇替代部分石油基多元醇来合成硬质聚氨酯泡沫。观察到,通过增加酯交换反应的棕榈油精基多元醇的用量,硬质聚氨酯泡沫的芯密度和抗压强度降低,但同时其隔热性能得到改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67a2/4320310/f6114289a58a/11746_2015_2592_Sch1_HTML.jpg

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