Author
Listed:
- Ivan N. Zubkov
(Scientific and Educational Center “Materials”, Don State Technical University, 1 Gagarin Square, 344003 Rostov-on-Don, Russia)
- Yuri V. Korolev
(Scientific and Educational Center “Materials”, Don State Technical University, 1 Gagarin Square, 344003 Rostov-on-Don, Russia)
- Ekaterina A. Korsunova
(Scientific and Educational Center “Materials”, Don State Technical University, 1 Gagarin Square, 344003 Rostov-on-Don, Russia)
- Alina A. Petrenko
(Scientific and Educational Center “Materials”, Don State Technical University, 1 Gagarin Square, 344003 Rostov-on-Don, Russia)
- Evgeniy V. Sadyrin
(Scientific and Educational Center “Materials”, Don State Technical University, 1 Gagarin Square, 344003 Rostov-on-Don, Russia)
- Alexey N. Saliev
(Laboratory of Polymer Materials and Composites Technology, Tula State University, 92 Lenin Ave, 300012 Tula, Russia)
- Victor A. Klushin
(Scientific and Educational Center “Materials”, Don State Technical University, 1 Gagarin Square, 344003 Rostov-on-Don, Russia)
Abstract
Managing polymer waste, primarily polyolefins—low- and high-density polyethylene and polypropylene—is a critical challenge in the transition to a low-carbon, circular economy. Traditional approaches (landfilling and incineration) are inconsistent with sustainable development principles and increasingly stringent extended producer responsibility regulations, while chemical recycling, particularly catalytic pyrolysis, is considered a key technology for returning hydrocarbon feedstocks to the production cycle. This mini-review systematizes and analyzes current advances in the catalytic pyrolysis of polyethylene and polypropylene. An algorithm for selecting a recycling route for polyolefin-containing waste based on its composition, degree of degradation, and the presence of hazardous additives is proposed. Existing and planned industrial projects in the field of chemical recycling of polyolefins are assessed, and challenges and prospects for technology commercialization are outlined. It is demonstrated that catalytic pyrolysis has the potential to become a key element of a circular economy for plastics, ensuring decarbonization and resource conservation with further optimization of catalysts and process flowsheets.
Suggested Citation
Ivan N. Zubkov & Yuri V. Korolev & Ekaterina A. Korsunova & Alina A. Petrenko & Evgeniy V. Sadyrin & Alexey N. Saliev & Victor A. Klushin, 2026.
"Catalytic Pyrolysis of Polyolefin Waste for Decarbonization and Circular Economy: A Mini-Review of Achievements and Industrial Prospects,"
Clean Technol., MDPI, vol. 8(4), pages 1-27, August.
Handle:
RePEc:gam:jcltec:v:8:y:2026:i:4:p:119-:d:2004948
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