Optimization of PET film glycolysis to BHET with walnut shell-derived catalysts

A new type of environmentally friendly walnut shell matrix and efficient catalyst (denoted H-800) containing a variety of metal elements was prepared by using waste biomass walnut shell as raw material. H-800 was employed to catalyze the depolymerization of waste polyethylene terephthalate films for ethylene glycol production. The effects of key reaction parameters, including catalyst dosage, ethylene glycol dosage, reaction temperature, and reaction time, on the yield of the depolymerized product bis(2-hydroxyethyl) terephthalate (BHET) were systematically investigated. Response surface methodology experiments were designed using Design-Expert software to assess the individual and interactive effects of these parameters on BHET yield, so as to determine the optimal reaction conditions for BHET generation. Under the optimized conditions (0.48 wt% H-800 dosage, 15.18 g ethylene glycol, reaction temperature of 194.7°C, and reaction time of 2.39 h), the maximum BHET yield of 80.02% was achieved.

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Publication Details

Journal
Green Materials
Published
2026-10-05
DOI
https://doi.org/10.1680/jgrma.26.00097
Primary Topic
Polymer crystallization and properties
Type
article
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article

Optimization of PET film glycolysis to BHET with walnut shell-derived catalysts

Ruiyang Wen, Guo‐Liang Shen, Tiejun Xu, Sijin Jiang et al.
Green Materials
Polymer crystallization and properties
article

Optimization of PET film glycolysis to BHET with walnut shell-derived catalysts

Ruiyang Wen, Guo‐Liang Shen, Tiejun Xu, Sijin Jiang, Xingzhu Han, Linlin Zhao
article en

Abstract

A new type of environmentally friendly walnut shell matrix and efficient catalyst (denoted H-800) containing a variety of metal elements was prepared by using waste biomass walnut shell as raw material. H-800 was employed to catalyze the depolymerization of waste polyethylene terephthalate films for ethylene glycol production. The effects of key reaction parameters, including catalyst dosage, ethylene glycol dosage, reaction temperature, and reaction time, on the yield of the depolymerized product bis(2-hydroxyethyl) terephthalate (BHET) were systematically investigated. Response surface methodology experiments were designed using Design-Expert software to assess the individual and interactive effects of these parameters on BHET yield, so as to determine the optimal reaction conditions for BHET generation. Under the optimized conditions (0.48 wt% H-800 dosage, 15.18 g ethylene glycol, reaction temperature of 194.7°C, and reaction time of 2.39 h), the maximum BHET yield of 80.02% was achieved.

Green Materials
Shenyang University of Technology (CN)
Openalex Percentile: Top 24%
Polymer crystallization and properties
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Optimization of PET film glycolysis to BHET with walnut shell-derived catalysts — Ruiyang Wen, Guo‐Liang Shen, et al. · Green Materials (2026) | TGRS Research Map | TGRS