Ran Hongshun, Zhang Shuo, Ni Wenyi, Jing Yaxuan
State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University Nanjing 210023 China.
Institute for the Environment and Health, Nanjing University Suzhou Campus Suzhou 215163 China
Chem Sci. 2023 Dec 8;15(3):795-831. doi: 10.1039/d3sc05701a. eCollection 2024 Jan 17.
The rapid accumulation of plastic waste has led to a severe environmental crisis and a noticeable imbalance between manufacturing and recycling. Fortunately, chemical upgradation of plastic waste holds substantial promise for addressing these challenges posed by white pollution. During plastic upcycling and recycling, the key challenge is to activate and cleave the inert C-C bonds in plastic waste. Therefore, this perspective delves deeper into the upcycling and recycling of polyolefins from the angle of C-C activation-cleavage. We illustrate the importance of C-C bond activation in polyolefin depolymerization and integrate molecular-level catalysis, active site modulation, reaction networks and mechanisms to achieve precise activation-cleavage of C-C bonds. Notably, we draw potential inspiration from the accumulated wisdom of related fields, such as C-C bond activation in lignin chemistry, alkane dehydrogenation chemistry, C-Cl bond activation in CVOC removal, and C-H bond activation, to influence the landscape of plastic degradation through cross-disciplinary perspectives. Consequently, this perspective offers better insights into existing catalytic technologies and unveils new prospects for future advancements in recycling and upcycling of plastic.
塑料垃圾的迅速积累导致了严重的环境危机以及制造与回收之间明显的失衡。幸运的是,塑料垃圾的化学升级为应对白色污染带来的这些挑战带来了巨大希望。在塑料升级再造和回收利用过程中,关键挑战在于激活并裂解塑料垃圾中惰性的碳-碳键。因此,本文从碳-碳键活化裂解的角度深入探讨聚烯烃的升级再造和回收利用。我们阐述了碳-碳键活化在聚烯烃解聚中的重要性,并整合了分子水平催化、活性位点调控、反应网络及机理,以实现碳-碳键的精准活化裂解。值得注意的是,我们从相关领域积累的知识中汲取潜在灵感,如木质素化学中的碳-碳键活化、烷烃脱氢化学、挥发性有机化合物去除中的碳-氯键活化以及碳-氢键活化,通过交叉影响来改变塑料降解的局面。因此,本文能更好地洞察现有催化技术,并揭示塑料回收和升级再造未来发展的新前景。