Carbios, Parc Cataroux-Bâtiment B80, 8 rue de la Grolière, 63100 Clermont-Ferrand, France.
Toulouse Biotechnology Institute, TBI, Université de Toulouse, CNRS, INRAE, INSA, Toulouse, France, 135, avenue de Rangueil, F-31077 Toulouse Cedex 04, France.
Chem Rev. 2023 May 10;123(9):5612-5701. doi: 10.1021/acs.chemrev.2c00644. Epub 2023 Mar 14.
Plastics are everywhere in our modern way of living, and their production keeps increasing every year, causing major environmental concerns. Nowadays, the end-of-life management involves accumulation in landfills, incineration, and recycling to a lower extent. This ecological threat to the environment is inspiring alternative bio-based solutions for plastic waste treatment and recycling toward a circular economy. Over the past decade, considerable efforts have been made to degrade commodity plastics using biocatalytic approaches. Here, we provide a comprehensive review on the recent advances in enzyme-based biocatalysis and in the design of related biocatalytic processes to recycle or upcycle commodity plastics, including polyesters, polyamides, polyurethanes, and polyolefins. We also discuss scope and limitations, challenges, and opportunities of this field of research. An important message from this review is that polymer-assimilating enzymes are very likely part of the solution to reaching a circular plastic economy.
塑料在我们现代的生活方式中无处不在,其产量每年都在增加,这引起了人们对环境的极大关注。如今,其末端管理包括在垃圾填埋场中堆积、焚烧和在较小程度上进行回收。这种对环境的生态威胁正在激发对塑料废物处理和回收的替代生物基解决方案,以实现循环经济。在过去的十年中,人们已经做出了相当大的努力,通过生物催化方法来降解商品塑料。在这里,我们提供了一个关于基于酶的生物催化的最新进展,以及相关生物催化过程的设计的综合评论,以回收或升级再利用商品塑料,包括聚酯、聚酰胺、聚氨酯和聚烯烃。我们还讨论了这个研究领域的范围和局限性、挑战和机遇。从这个综述中可以得出一个重要信息,即聚合物同化酶很可能是实现循环塑料经济的解决方案的一部分。