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机械化学:回收热固性聚氨酯的有效方法。

Mechanochemistry: An Efficient Way to Recycle Thermoset Polyurethanes.

作者信息

He Ping, Lu Hao, Ruan Haoda, Wang Congyang, Zhang Qiang, Huang Zezhong, Liu Jing

机构信息

College of Mechanical and Electrical Engineering, Anhui Jianzhu University, Hefei 230601, China.

出版信息

Polymers (Basel). 2022 Aug 11;14(16):3277. doi: 10.3390/polym14163277.

Abstract

A recycling process of waste thermosetting polyurethane plastics was proposed based on the mechanochemical method, aiming at the three-dimensional network cross-linking structure of thermosetting polyurethane. Orthogonal experimental design was adopted to select three factors of crushing speed, crushing time, and feed amount to determine the best crushing parameters. Then, the waste polyurethane insulation boards were crushed and degraded by the mechanism of regenerative forming with the adjustable speed test machine. Accordingly, the recycled powder was obtained. Finally, nine kinds of polyurethane recycled composite plates were prepared by hot pressing process. The degradation effect of thermosetting polyurethane was analyzed by Fourier transform infrared spectroscopy, scanning electron microscope, and X-ray diffraction. Moreover, the mechanical properties and thermal insulation properties of recycled composite plates were tested and analyzed. The results show that the network cross-linking molecular structure of waste thermosetting polyurethane plastics is destroyed by the effect of mechanochemical action, and methyl and aldehyde groups are decomposed. Therefore, a recycled powder with strong reactivity and plasticity is generated, which improves the activity regeneration ability. After adding thermoplastic resin, the mechanical properties and formability of recycled composite plates are enhanced, with maximum tensile strength up to 9.913 MPa. Correspondingly, the thermal insulation performance of plates is reduced. However, the minimum thermal conductivity can also reach 0.056 W/m·K. This study provides an effective method for the recycling of thermosetting polyurethane plastics.

摘要

基于机械化学法提出了一种废弃热固性聚氨酯塑料的回收工艺,该工艺针对热固性聚氨酯的三维网络交联结构。采用正交试验设计选取破碎速度、破碎时间和进料量三个因素来确定最佳破碎参数。然后,利用调速试验机通过再生成型机理对废弃聚氨酯保温板进行破碎和降解,从而得到回收粉末。最后,通过热压工艺制备了九种聚氨酯再生复合板。利用傅里叶变换红外光谱、扫描电子显微镜和X射线衍射分析了热固性聚氨酯的降解效果。此外,对再生复合板的力学性能和保温性能进行了测试与分析。结果表明,废弃热固性聚氨酯塑料的网络交联分子结构在机械化学作用下被破坏,甲基和醛基发生分解,从而生成了具有强反应活性和可塑性的回收粉末,提高了活性再生能力。添加热塑性树脂后,再生复合板的力学性能和成型性得到增强,最大拉伸强度可达9.913MPa。相应地,板材的保温性能有所降低,但最低导热系数仍可达到0.056W/(m·K)。本研究为热固性聚氨酯塑料的回收提供了一种有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7583/9412547/1d37a716dcd5/polymers-14-03277-g001.jpg

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