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醇中强布朗斯特碱催化选择性断裂酰胺键实现废聚对苯二甲酰对苯二胺的化学回收。

Chemical recycling of waste poly-p-phenylene terephthamide via selective cleavage of amide bonds catalyzed by strong Brönsted base in alcohols.

机构信息

Shanxi Engineering Research Center of Biorefinery, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan 030001, People's Republic of China; Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

Shanxi Engineering Research Center of Biorefinery, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan 030001, People's Republic of China; Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China; CAS Key Laboratory of Carbon Materials, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan 030001, People's Republic of China.

出版信息

Waste Manag. 2022 Jan 1;137:275-282. doi: 10.1016/j.wasman.2021.11.006. Epub 2021 Nov 20.

Abstract

Poly-p-phenylene terephthamide (PPTA) is widely applied in bulletproof products and composite materials because of its high strength, high modulus, high temperature resistance and creep resistance. The PPTA molecule with highly symmetrical and regular structure is linear structure formed by the alternating connection of benzene ring and amide bond, and the amide bonds between the molecular chains form strong hydrogen bonds. Therefore, the dissolution and depolymerization of PPTA is very challenging. In this work, an efficient catalytic system was developed for the controllable degradation of waste PPTA, and the high-value added monomers terephthalic acid (TPA) and p-phenylenediamine (PPD) were recovered. The results show that the amide bonds of PPTA can be selectively cleaved by the strong Brönsted base catalysts in alcohols, especially in the NaOH/n-butanol system. Under the optimal degradation conditions (5 wt% NaOH in n-butanol, 180 °C, 6 h), the percentage degradation of PPTA is 100%, and the yields of TPA and PPD are 92.0% and 91.5%, respectively. In addition, it is found that the wettability of n-alcohols on PPTA monofilament and the addition of a small amount of water have important influences on the degradation of PPTA. The work elucidates the degradation mechanism of PPTA, and reveals the important factors affecting the depolymerization of PPTA.

摘要

聚对苯二甲酰对苯二胺(PPTA)因其高强度、高模量、耐高温和抗蠕变等特性,被广泛应用于防弹产品和复合材料中。PPTA 分子具有高度对称和规则的结构,由苯环和酰胺键的交替连接形成线性结构,分子链之间的酰胺键形成强氢键。因此,PPTA 的溶解和解聚极具挑战性。在这项工作中,开发了一种高效的催化体系,用于可控降解废 PPTA,并回收高附加值的单体对苯二甲酸(TPA)和对苯二胺(PPD)。结果表明,酰胺键可在醇中被强 Brönsted 碱催化剂选择性切断,尤其是在 NaOH/n-丁醇体系中。在最佳降解条件(5wt%NaOH 在 n-丁醇中,180°C,6h)下,PPTA 的降解率达到 100%,TPA 和 PPD 的收率分别为 92.0%和 91.5%。此外,还发现 n-醇在 PPTA 单丝上的润湿性以及少量水的加入对 PPTA 的降解有重要影响。该工作阐明了 PPTA 的降解机制,并揭示了影响 PPTA 解聚的重要因素。

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