Fractionated degradation and valorization of polypropylene waste into sulfonate surfactants

Z Zhen Xu Y Yang Zhang T Tao Wang R Rong Yang H Hao Sun M Meiling Chen F Feng Liu J Jianjun Xu (Liver Transplant Center, Union Hospital, Tongji Medical College) K Kai-Jie Chen (School of Chemistry and Chemical Engineering) Q Qikun Zhang F Fuping Pan (School of Chemistry and Chemical Engineering)

Abstract

Abstract Tandem upcycling presents a promising approach to converting plastic waste into valuable chemicals. Controlling the chain length distribution (CLD) of hydrocarbons in plastic degradation is crucial for the downstream synthesis of high-quality and high-value functional chemicals. However, controlling the CLD remains a significant challenge due to the high randomness and poor regulation of polymer chain scission. Herein, we introduce a fractionated degradation approach to tune the CLD of hydrocarbons derived from polypropylene (PP) degradation, thereby facilitating effective downstream valorization. By designing a fractionated degradation reactor that manipulates latent heat, we achieve size-selective degradation of PP into C 6 -C 15 and C 15 -C 28 α-alkenes with narrower and more tunable CLDs compared to traditional methods. Modeling and ASPEN simulations reveal a quasi-linear relationship between chain length and fraction temperatures, as well as a positive correlation between CLD and number of fractions. Scale-up experiments with 10 kg of real-life PP waste validate the effectiveness of the fractionated degradation. The PP-derived α-alkenes with narrow CLDs exhibit superior performance in sulfonation, resulting in foaming, detergency, and biodegradability, comparable to commercial sulfonate surfactants. Techno-economic and life cycle analyses demonstrate improved economic and ecological benefits of PP-to-surfactant upcycling over existing petrochemical-based methods.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 25, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

Z

Zhen Xu

Y

Yang Zhang

T

Tao Wang

R

Rong Yang

H

Hao Sun

M

Meiling Chen

F

Feng Liu

J

Jianjun Xu

Liver Transplant Center, Union Hospital, Tongji Medical College

K

Kai-Jie Chen

School of Chemistry and Chemical Engineering

Q

Qikun Zhang

F

Fuping Pan

School of Chemistry and Chemical Engineering