The escalating accumulation of plastic waste is a major environmental crisis, with global plastic production exceeding 400 million tonnes annually. A significant portion of this waste arises from polyolefins such as polyethylene and polypropylene, which are notoriously difficult to recycle due to their chemical inertness. Currently, only about 9% of plastic waste is recycled worldwide, while nearly half ends up in landfills, reinforcing the unsustainable take–make–dispose model. Traditional mechanical recycling often yields downcycled products with reduced performance, failing to address the problem effectively. Two transformative approaches are redefining plastic waste management: vitrimer technology and chemical valorization. Vitrimers, with dynamic covalent networks, combine durability with reprocessability, enabling multiple recycling cycles without property loss. Meanwhile, catalytic and solvolytic methods are converting plastics into valuable chemicals and fuels. Together, these innovations enhance recycling efficiency, create economic incentives, and offer pathways toward a sustainable circular polymer economy.
Dey et al. (Tue,) studied this question.