Department of Environment Systems, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Japan.
Environmental Science Center, The University of Tokyo, Tokyo, Japan.
Waste Manag. 2020 May 1;108:62-69. doi: 10.1016/j.wasman.2020.04.035. Epub 2020 Apr 24.
Char, a solid product obtained from carbonization of waste Poly(Ethylene) Terephthalate (PET), has high potential to solve the current plastic waste problem through the synthesis of new carbon-based adsorbents. However, thermal degradation reaction of polymer involves multiple series of complex reaction pathways and the formation of char is not clarified. In this study, the phase behavior of PET carbonization and the mechanism of char formation was studied in detail. Based on the van Krevelen diagram, it is evident that rapid thermal decomposition of PET occurs through decarbonylation to form char and decarboxylation to form wax. Based on the analysis of cross-linking behavior, a correlation between the degree of cross-linking as a function of CO and CO and dependent parameters based on the experimental operation was obtained. The findings validified the assumption that scission of CO bond in the ester group through decarbonylation and decarboxylation to release CO and CO leads to the formation of char. The cross-linking behavior was further clarified by studying the distribution of cross-linking structure in char and wax. It was confirmed that decarbonylation reaction to release CO is highly associated with the formation of cross-linking to form char in the solid residue, whereas decarboxylation reaction to release CO is highly associated with the formation of cross-linking to form aromatic compounds in the wax residue.
从废弃聚对苯二甲酸乙二醇酯(PET)碳化得到的固体产物炭,通过合成新型碳基吸附剂,具有解决当前塑料废物问题的巨大潜力。然而,聚合物的热降解反应涉及多个复杂反应途径,炭的形成并不明确。在本研究中,详细研究了 PET 碳化的相行为和炭形成的机理。根据范克列维伦图,可以明显看出 PET 通过脱羰形成炭和脱羧形成蜡发生快速热分解。根据交联行为的分析,得到了交联度与 CO 和 CO 依赖参数之间的关系,该关系基于实验操作。这些发现验证了通过脱羰和脱羧从酯基中释放 CO 和 CO 导致炭形成的假设,从而切断 CO 键。通过研究炭和蜡中交联结构的分布,进一步阐明了交联行为。证实了脱羰反应释放 CO 与在固体残渣中形成交联形成炭密切相关,而脱羧反应释放 CO 与在蜡残渣中形成交联形成芳香族化合物密切相关。