Wang Nan, Liu Jieyi, Liu Sibao, Liu Guozhu
Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology, 300072, Tianjin, China.
Haihe Lab of Sustainable Chemical Transformations, Tianjin, 300192, China.
Chempluschem. 2024 Sep;89(9):e202400190. doi: 10.1002/cplu.202400190. Epub 2024 Jun 14.
Chemical recycling and upcycling offer promising approaches for the management of plastic wastes. Hydrodeoxygenation (HDO) is one of the appealing ways for conversion of oxygen-containing plastic wastes, including polyethylene terephthalate (PET), polybutylene terephthalate (PBT), polycarbonate (PC), polyphenyl ether (PPO), and polyether ether ketone (PEEK), into cyclic alkanes and aromatics in high yields under mild reaction conditions. The challenge lies in achieving C-O activation while preserving C-C bonds. In this review, we highlight the recent advancements in catalytic strategies and catalysts for the conversion of these oxygen-containing plastic wastes into cycloalkanes and aromatics. The reaction systems, including multi-step routes, direct HDO and transfer HDO methods, are exemplified. The design and performance of HDO catalysts are systematically summarized and compared. We comprehensively discuss the functions of the catalysts' components, reaction pathway and mechanism to gain insights into the HDO process for efficient valorization of oxygen-containing plastic wastes. Finally, we provide perspectives for this field, with specific emphasis on the non-noble metal catalyst design, selectivity control, reaction network and mechanism studies, mixed plastic wastes management and product functionalization. We anticipate that this review will inspire innovations on the catalytic process development and rational catalyst design for the HDO of oxygen-containing aromatic plastics to establish a low-emission circular economy.
化学回收和升级回收为塑料废物的管理提供了有前景的方法。加氢脱氧(HDO)是将含氧化合物的塑料废物,包括聚对苯二甲酸乙二酯(PET)、聚对苯二甲酸丁二酯(PBT)、聚碳酸酯(PC)、聚苯醚(PPO)和聚醚醚酮(PEEK),在温和反应条件下高产率转化为环烷烃和芳烃的有吸引力的方法之一。挑战在于在保留碳 - 碳键的同时实现碳 - 氧活化。在这篇综述中,我们重点介绍了将这些含氧化合物的塑料废物转化为环烷烃和芳烃的催化策略和催化剂的最新进展。举例说明了反应体系,包括多步路线、直接HDO和转移HDO方法。系统地总结和比较了HDO催化剂的设计和性能。我们全面讨论了催化剂组分的功能、反应途径和机理,以深入了解含氧化合物的塑料废物高效增值的HDO过程。最后,我们为该领域提供了展望,特别强调了非贵金属催化剂设计、选择性控制、反应网络和机理研究、混合塑料废物管理以及产品功能化。我们预计这篇综述将激发含氧化合物的芳香塑料HDO催化过程开发和合理催化剂设计方面的创新,以建立低排放的循环经济。