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Metathesized palm oil polyol for the preparation of improved bio-based rigid and flexible polyurethane foams

机译:易位的棕榈油多元醇,用于制备改良的生物基硬质和软质聚氨酯泡沫

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Polyols derived from 1-butene cross metathesized palm oil (PMTAG polyol) were used to prepare improved rigid and flexible foams. The chemical structure, thermal degradation, thermal transition behavior and compressive strength of the foams were determined using FTIR (Fourier Transform Infrared Spectroscopy), TGA (Thermogravimetric analysis), DSC (Differential Scanning Calorimetry) and texture analyzer, respectively. Their cellular structure was investigated by SEM (Scanning Electron Microscopy). Both the rigid and the flexible foams from the metathesized palm oil polyol displayed high thermal stability (Ton of degradation of similar to 253 degrees C) comparable to commercial and other vegetable oil polyol foams. The rigid foams from the polyol of PMTAG presented compressive strengths as high as 2.6 MPa, a value higher than similar foams prepared from palm oil polyol or highly unsaturated vegetable oils such soybean and canola oil based polyols. The flexible foams from the metathesized palm oil polyol displayed excellent flexibility with more than 90% recovery in thickness after compression. (C) 2015 Elsevier B.V. All rights reserved.
机译:衍生自1-丁烯交叉复分解棕榈油的多元醇(PMTAG多元醇)用于制备改良的硬质和软质泡沫。分别使用FTIR(傅立叶变换红外光谱法),TGA(热重分析),DSC(差示扫描量热法)和质构分析仪确定泡沫的化学结构,热降解,热转变行为和抗压强度。通过SEM(扫描电子显微镜)研究它们的细胞结构。来自易位的棕榈油多元醇的硬质泡沫塑料和软质泡沫均显示出可与商业和其他植物油多元醇泡沫相比的高热稳定性(降解吨,类似于253摄氏度)。来自PMTAG多元醇的硬质泡沫塑料的抗压强度高达2.6 MPa,高于由棕榈油多元醇或高度不饱和植物油(例如大豆和菜籽油基多元醇)制备的类似泡沫塑料的抗压强度。来自易位的棕榈油多元醇的软质泡沫塑料显示出优异的柔韧性,压缩后的厚度恢复率超过90%。 (C)2015 Elsevier B.V.保留所有权利。

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