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聚烯烃的催化升级循环利用

Catalytic Upcycling of Polyolefins.

作者信息

Sun Jiakai, Dong Jinhu, Gao Lijun, Zhao Yu-Quan, Moon Hyunjin, Scott Susannah L

机构信息

Department of Chemistry and Biochemistry, University of California, Santa Barbara, California 93106-9510, United States.

Department of Chemical Engineering, University of California, Santa Barbara, California 93106-5080, United States.

出版信息

Chem Rev. 2024 Aug 28;124(16):9457-9579. doi: 10.1021/acs.chemrev.3c00943. Epub 2024 Aug 16.

Abstract

The large production volumes of commodity polyolefins (specifically, polyethylene, polypropylene, polystyrene, and poly(vinyl chloride)), in conjunction with their low unit values and multitude of short-term uses, have resulted in a significant and pressing waste management challenge. Only a small fraction of these polyolefins is currently mechanically recycled, with the rest being incinerated, accumulating in landfills, or leaking into the natural environment. Since polyolefins are energy-rich materials, there is considerable interest in recouping some of their chemical value while simultaneously motivating more responsible end-of-life management. An emerging strategy is catalytic depolymerization, in which a portion of the C-C bonds in the polyolefin backbone is broken with the assistance of a catalyst and, in some cases, additional small molecule reagents. When the products are small molecules or materials with higher value in their own right, or as chemical feedstocks, the process is called upcycling. This review summarizes recent progress for four major catalytic upcycling strategies: hydrogenolysis, (hydro)cracking, tandem processes involving metathesis, and selective oxidation. Key considerations include macromolecular reaction mechanisms relative to small molecule mechanisms, catalyst design for macromolecular transformations, and the effect of process conditions on product selectivity. Metrics for describing polyolefin upcycling are critically evaluated, and an outlook for future advances is described.

摘要

大宗商品聚烯烃(特别是聚乙烯、聚丙烯、聚苯乙烯和聚氯乙烯)的产量巨大,再加上它们的单位价值低且有众多短期用途,这带来了重大且紧迫的废物管理挑战。目前,这些聚烯烃中只有一小部分通过机械方式回收利用,其余的则被焚烧、堆积在垃圾填埋场或泄漏到自然环境中。由于聚烯烃是富含能量的材料,人们对回收其中一些化学价值并同时推动更负责任的报废管理颇感兴趣。一种新兴策略是催化解聚,即在催化剂以及某些情况下额外的小分子试剂的协助下,使聚烯烃主链中的一部分碳 - 碳键断裂。当产物是小分子或本身具有更高价值的材料,或者用作化学原料时,该过程称为升级循环利用。本综述总结了四种主要催化升级循环利用策略的最新进展:氢解、(加氢)裂化、涉及复分解反应的串联过程以及选择性氧化。关键考虑因素包括相对于小分子机制的大分子反应机制、用于大分子转化的催化剂设计以及工艺条件对产物选择性的影响。对描述聚烯烃升级循环利用的指标进行了批判性评估,并对未来进展进行了展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5780/11363024/007ecc4b1512/cr3c00943_0001.jpg

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