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A case for closed-loop recycling of post-consumer PET for automotive foams

机译:用于汽车泡沫的消费后PET闭环回收的案例

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HighlightsMixed polyethylene terephthalate (PET) waste streams can be up-cycled into polyols.Synthesis of flexible polyurethane foams from these PET polyols is demonstrated.Automotive-relevant mechanical/thermal properties increase with PET polyol content.The results demonstrate a closed-loop opportunity for automotive interior foams.AbstractStriving to utilize sustainable material sources, polyester polyols made via glycolysis and esterification of recycled polyethylene terephthalate (rPET) scrap were used to synthesize flexible polyurethane (PU) foams typically found in automotive interior applications. The objective of this endeavor was to ascertain if a closed-loop model could be established with the discarded PET feedstock. In five separate formulations, up to 50% of the total polyol content (traditionally derived from petroleum-based feedstock) was replaced with the afore-mentioned sustainable recycled polyols. These foams underwent mechanical, thermal, morphological, and physical characterization testing to determine feasibility for use in an automotive interior. Young’s modulus, tensile stress at maximum load, tear resistance, and compression modulus all increased by combined averages of 121%, 67%, 32%, and 150% over the control petroleum-based formulation, respectively, in foams possessing 50% rPET polyol content. Thermal stability also increased with sustainable polyol content; thermogravimetric analysis showed that 50% mass loss temperature increased by an average of 20 °C in foams containing 30% recycled polyol. Properties of density and SAG factor remained within 5% of the control petroleum-based reference foams. After comparing these findings to traditional polyols, a compelling argument can be made for the use of post-consumer automotive and industrial feedstocks in developing high-performing interior automotive PU foams.
机译: 突出显示 混合的聚对苯二甲酸乙二醇酯(PET)废物流可以向上循环成多元醇。 由这些PET合成软质聚氨酯泡沫 与汽车相关的机械/热性能随PET多元醇含量的增加而增加。 结果证明了闭环oppor 摘要 努力利用可持续的材料来源,通过对回收的聚对苯二甲酸乙二醇酯(rPET)废料进行糖解和酯化制得的聚酯多元醇用于合成柔性聚氨酯(PU) )通常在汽车内部应用中发现的泡沫。这项工作的目的是确定是否可以用废弃的PET原料建立闭环模型。在五种不同的配方中,最多50%的多元醇总含量(传统上来源于石油基原料)被上述的可持续循环多元醇替代。这些泡沫经过机械,热,形态和物理特性测试,以确定在汽车内饰中使用的可行性。在含有50%rPET多元醇的泡沫塑料中,杨氏模量,最大载荷下的拉应力,抗撕裂性和压缩模量分别比对照石油基配方分别提高了121%,67%,32%和150%。内容。可持续的多元醇含量也提高了热稳定性;热重分析表明,在含有30%回收多元醇的泡沫中,50%质量损失温度平均提高了20°C。密度和SAG因子的性质保持在对照石油基参考泡沫的5%以内。将这些发现与传统多元醇进行比较后,可以得出一个令人信服的论点,即使用消费后的汽车和工业原料开发高性能的内部汽车PU泡沫。

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