Mechanochemical Degradation of Polystyrene Into Benzene for Recycling and Upcycling

M Ming‐Chi Wang (School of Polymer Science and Polymer Engineering University of Akron 170 University Ave. Akron OH 44325 USA) J Junyang Li A Ashley Zelina (School of Polymer Science and Polymer Engineering University of Akron 170 University Ave. Akron OH 44325 USA) B Benjamin Pepper (School of Polymer Science and Polymer Engineering University of Akron 170 University Ave. Akron OH 44325 USA) J Junpeng Wang (School of Polymer Science and Polymer Engineering)

Abstract

AbstractSynthetic plastics sourced from petroleum have gained widespread use since the 1950s. Polystyrene (PS) is one of the most extensively used plastics, as it is colorless, has high mechanical strength, and exhibits excellent chemical and thermal stability; however, it is also one of the least recycled plastics because of the high cost and low profit in recycling. Herein, we demonstrate a mechanochemical recycling approach that allows PS to be efficiently degraded into benzene when it is ground in a ball mill with AlCl3. For example, when 165 kDa PS pellets are milled with AlCl3, the extent of degradation reaches 90% at 15 min. Isotope labeling experiments indicate that both ambient water and the polymer backbone can be proton sources for the formation of benzene. The benzene generated in the mechanochemical degradation can be used to synthesize styrene, which can be repolymerized to produce polystyrene, allowing for the closed‐loop recycling of PS. In addition, a mechanochemical Friedel–Crafts acylation between the generated benzene and the subsequently added benzoic anhydride produces benzophenone in 40%–50% yield. The mechanochemical degradation process demonstrated here is solvent‐free, cost‐effective, and energy‐efficient, providing a promising route for the chemical recycling and upcycling of PS.

Article Details

Volume / Issue Vol. 64, Issue 41
Published October 06, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (5)

M

Ming‐Chi Wang

School of Polymer Science and Polymer Engineering University of Akron 170 University Ave. Akron OH 44325 USA

J

Junyang Li

A

Ashley Zelina

School of Polymer Science and Polymer Engineering University of Akron 170 University Ave. Akron OH 44325 USA

B

Benjamin Pepper

School of Polymer Science and Polymer Engineering University of Akron 170 University Ave. Akron OH 44325 USA

J

Junpeng Wang

School of Polymer Science and Polymer Engineering