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Natural oil based highly functional polyols as feedstock for rigid polyurethane foam thermal insulation

机译:天然油的高官能多元醇作为刚性聚氨酯泡沫保温的原料

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摘要

High functional polyols were obtained from natural oil feedstock available in Northern Europe via a modification of established polyol synthesis method from epoxidized vegetable oil. Epoxy ring opening and subsequent transesterification of the glycerol backbone with different polyfunctional alcohols, such as diethylene glycol (DEG), triethanolamine (TEA) and diethanolamine (DEA), were used to obtain polyols with high reactivity and high functionality. Chemical structure of obtained polyols was studied by Fourier transform infrared (FTIR) spectroscopy, gel permeation chromatography (GPC) and the matrix-assisted laser desorption/ionisation time of-flight (MALDI-TOF) mass spectrometry. From GPC data average molecular weight (M-n), the weight average molecular weight (M-w), polydispersity index and average functionality (f(n)) of polyols were determined. The obtained polyols were characterized by high f(n) = 3.6-5.8 and acceptable by industry standards OH value of 471-635 mgKOH/g and were used to prepare rigid PU foam thermal insulation material. It was possible to develop rigid PU foam formulations without using additional catalysts, which could be a positive effect in case of fast curing systems. The produced rigid PU foam thermal insulation materials had up-to industry standard characteristics of closed cell content above 95%, the apparent density of 40 kg/m(3) and thermal conductivity below 22.0 mW/m.K for the majority of developed materials.
机译:通过来自环氧化植物油的已建立的多元醇合成方法,从北欧可用的天然油原料中获得高官能多元醇。使用不同多官能醇的环氧环开口和随后的甘油骨架酯化,例如二甘醇(DEG),三乙醇胺(茶)和二乙醇胺(DEA),得到具有高反应性和高官能度的多元醇。通过傅里叶变换红外(FTIR)光谱,凝胶渗透色谱(GPC)和基质辅助激光解吸/电离飞行(MALDI-TOF)质谱法,研究了多元醇的化学结构。从GPC数据平均分子量(M-N),测定重均分子量(M-W),多分散性指数和平均官能度(F(n))的多元醇。所得多元醇的特征在于高f(n)= 3.6-5.8,并且由工业标准的OH值可接受471-635 mgKOH / g,并用于制备刚性PU泡沫保温材料。可以在不使用其他催化剂的情况下开发刚性PU泡沫制剂,这可能是在快速固化系统的情况下是正效应。所生产的刚性PU泡沫保温材料具有高于95%以上的封闭电池含量的高度行业标准特性,表观密度为40kg / m(3)和导热率低于22.0 mw / m.k的大多数发达的材料。

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