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Characterization of Renewable PUF and Preparation of Polyurethane Foam Composites with Alkali Lignin/Renewable PUF

机译:可再生PUF的表征及碱木质素/可再生PUF制备聚氨酯泡沫复合材料

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The renewable PUF was prepared by the alcoholysis of the used polyurethane foam composite and thepolyurethane foam composite was also prepared by alkali lignin and renewable PUF. The renewable PUF was examinedby GC-MS, the results showed the renewable PUF mainly consists of glycol, propanol and 1, 2-Benzenedicarboxylic acid,which can directly be used as the raw material of polyurethane foam composite. The dose of glycol impacts on theperformances of renewable PUF, the viscosity of renewable PUF decreased with the increase of the dose glycol. Theprepared polyurethane foam composite was also tested. Thermal stability as well as compression property was studied. Itwas obtained from the TG curve and the DTG curve that the initial decomposition temperatures of polyurethane foamcomposites with 10% renewable PUF and without renewable PUF were 286.75°C and300.63 °C, respectively, whichshowed the renewable PUF affected the thermal stability of the polyurethane foam composite. The compressive strength(σ10) was from 203kPa to 125 kPa, which were affected by the dose of renewable PUF.
机译:通过废旧聚氨酯泡沫复合材料的醇解制备可再生PUF,还通过碱木质素和可再生PUF制备聚氨酯泡沫复合材料。通过气相色谱-质谱法对可再生PUF进行了检测,结果表明可再生PUF主要由乙二醇,丙醇和1,2-苯二甲酸组成,可直接用作聚氨酯泡沫复合材料的原料。乙二醇的用量对可再生PUF的性能有影响,可再生PUF的粘度随乙二醇用量的增加而降低。还测试了制备的聚氨酯泡沫复合材料。研究了热稳定性以及压缩性能。由TG曲线和DTG曲线可知,含10%可再生PUF和无可再生PUF的聚氨酯泡沫复合材料的初始分解温度分别为286.75°C和300.63°C,表明可再生PUF影响聚氨酯的热稳定性。泡沫复合材料。抗压强度(σ10)为203kPa至125kPa,受可再生PUF剂量的影响。

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