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使用超临界乙醇与(2,3,5-三苯基四氮唑)[氯化铜]配合物对环氧/玻璃纤维复合材料进行回收利用。

Recycling of Epoxy/Fiberglass Composite Using Supercritical Ethanol with (2,3,5-Triphenyltetrazolium)[CuCl] Complex.

作者信息

Protsenko Alexander E, Protsenko Alexandra N, Shakirova Olga G, Petrov Victor V

机构信息

Department of Chemistry and Chemical Technology, Komsomolsk-na-Amure State University, 681013 Komsomolsk-on-Amur, Russia.

出版信息

Polymers (Basel). 2023 Mar 21;15(6):1559. doi: 10.3390/polym15061559.

Abstract

The widespread use of polymer composite materials (PCM) leads to an increase in non-recyclable waste. This paper discusses the feasibility of recycling fiberglass with an epoxy matrix by solvolysis in ethanol under supercritical conditions. The solvolysis process completes successfully within four hours in an environment of a pure solvent containing 10% water at a temperature of 280 °C when the solvent passes into the supercritical state. The treatment time increases up to 10 h at a process temperature of 250 °C. When using a coordination compound of copper(II) chloride with organic chloride salt having 2,3,5-triphenyltetrazolium as the counterion, having the composition of (2,3,5-triphenyltetrazolium)[CuCl], the treatment time is reduced. The addition of the complex of 5% by weight makes it possible to completely remove the epoxy matrix at a temperature of 250 °C for two hours. The products separated from the solvolysis liquid were studied by infrared spectroscopy. The resulting fibers were examined by thermogravimetric analysis and scanning electron microscopy. The residual strength of the recovered fibers is 98%. Thus, the resulting fibers can be reused in the composite industry. Including both for the production of decorative products and for the production of structural products made of polymer composite materials.

摘要

聚合物复合材料(PCM)的广泛使用导致不可回收废物的增加。本文讨论了在超临界条件下通过乙醇中的溶剂解回收具有环氧基质的玻璃纤维的可行性。当溶剂进入超临界状态时,在280℃温度下,在含有10%水的纯溶剂环境中,溶剂解过程在4小时内成功完成。在250℃的工艺温度下,处理时间增加到10小时。当使用氯化铜(II)与具有2,3,5-三苯基四唑鎓作为抗衡离子的有机氯化物盐的配位化合物,其组成为(2,3,5-三苯基四唑鎓)[CuCl]时,处理时间会减少。添加5重量%的该配合物使得在250℃温度下两小时内能够完全去除环氧基质。通过红外光谱对从溶剂解液中分离出的产物进行了研究。通过热重分析和扫描电子显微镜对所得纤维进行了检查。回收纤维的残余强度为98%。因此,所得纤维可在复合材料工业中重复使用。包括用于生产装饰产品以及用于生产由聚合物复合材料制成的结构产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9c0/10051948/f30bb9bdb9c1/polymers-15-01559-g001.jpg

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