School of Polymer Science and Polymer Engineering, The University of Akron, Akron, OH 44325, USA.
Angew Chem Int Ed Engl. 2023 Jul 3;62(27):e202300768. doi: 10.1002/anie.202300768. Epub 2023 Apr 27.
The accumulation of plastic waste, due to lack of recycling, has led to serious environmental pollution. Although mechanical recycling can alleviate this issue, it inevitably reduces the molecular weight and weakens the mechanical properties of materials and is not suitable for mixed materials. Chemical recycling, on the other hand, breaks the polymer into monomers or small-molecule constituents, allowing for the preparation of materials of quality comparable to that of the virgin polymers and can be applied to mixed materials. Mechanochemical degradation and recycling leverages the advantages of mechanical techniques, such as scalability and efficient energy use, to achieve chemical recycling. We summarize recent progress in mechanochemical degradation and recycling of synthetic polymers, including both commercial polymers and those designed for more efficient mechanochemical degradation. We also point out the limitations of mechanochemical degradation and present our perspectives on how the challenges can be mitigated for a circular polymer economy.
由于缺乏回收利用,塑料废物的积累导致了严重的环境污染。虽然机械回收可以缓解这个问题,但它不可避免地会降低材料的分子量并削弱其机械性能,并且不适用于混合材料。相比之下,化学回收将聚合物分解成单体或小分子组成部分,从而可以制备出与原始聚合物质量相当的材料,并且可以应用于混合材料。机械化学降解和回收利用利用了机械技术的优势,如可扩展性和高效能源利用,以实现化学回收。我们总结了合成聚合物的机械化学降解和回收的最新进展,包括商业聚合物和为更高效的机械化学降解而设计的聚合物。我们还指出了机械化学降解的局限性,并提出了我们对如何缓解这些挑战以实现循环聚合物经济的看法。