Department of Chemistry, University of Wisconsin - Madison, 1101 University Avenue, Madison, WI, 53706, USA.
Department of Chemical and Biological Engineering, University of Wisconsin - Madison, 1415 Engineering Drive, Madison, WI, 53706, USA.
ChemSusChem. 2020 Nov 20;13(22):5808-5836. doi: 10.1002/cssc.202001905. Epub 2020 Oct 16.
Plastic solid waste (PSW) is an ever-growing environmental challenge for our society, as it not only ends up in landfills but also in waterways and oceans and is consequently entering the food chain. A key strategy to overcome this problem while also preserving carbon resources is to use PSW as a feedstock, evolving towards a circular economy. To implement this, mechanical as well as chemical recycling technologies must be developed. Indeed, owing to the high volume of PSW generated each year, mechanical recycling alone is not adequate for addressing this global challenge. Because of this, chemical recycling via thermal and heterogeneous catalytic conversion has received growing attention. This process has the potential to take PSW and convert it into usable monomers, fuels, synthesis gas, and adsorbents under more sustainable conditions than thermal degradation. This Review highlights the recent research advances in catalytic technologies for PSW conversion and valorization.
塑料固体废物(PSW)是我们社会面临的一个日益严峻的环境挑战,因为它不仅最终进入垃圾填埋场,而且还进入水道和海洋,并因此进入食物链。克服这个问题同时保护碳资源的一个关键策略是将 PSW 用作原料,向循环经济发展。为此,必须开发机械和化学回收技术。事实上,由于每年产生的 PSW 数量巨大,仅机械回收不足以应对这一全球性挑战。因此,通过热和多相催化转化的化学回收受到了越来越多的关注。与热降解相比,该过程有可能将 PSW 转化为更可持续条件下可用的单体、燃料、合成气和吸附剂。本综述重点介绍了 PSW 转化和增值的催化技术的最新研究进展。