Extraction of terephthalate from PET-derived sodium terephthalate model solution using a chitosan-based polymer inclusion membrane

The rise of polyethene terephthalate (PET) has raised environmental concerns. Alkaline hydrolysis enables recovery of terephthalate (TP 2 − ), but efficient separation remains challenging. Thus, the separation method for TP 2 − requires further study. In this study, a chitosan-based polymer inclusion membrane (PIM) incorporating the protic ionic liquid (PIL) 1,5-diazabicyclo[4.3.0]non-5-ene acetate ([DBNH][OAc]) and dioctyl phthalate (DOP) was developed for TP 2− extraction. The membrane was fabricated using a previously reported 3D-printed membrane caster and characterised using FTIR-ATR, SEM-EDX, XRD, TGA, BET, optical microscopy and water uptake capacity (WUC). The screened PIM achieved an extraction efficiency of (82.6 ± 0.15) % with a flux of 7.45 × 10 −6 mg cm −2 s −1 , a permeability coefficient of 1.49 × 10 −4 cm s −1 and retained over 65% efficiency after six cycles, while the recovery efficiency of TP 2- showed a gradual decrease. A small amount of DOP detected in both solutions may partially explain the decreased efficiency observed during repeated use. The extraction in Na 2 TP spiked water (tap water, lake water and seawater) demonstrates low extraction efficiency in seawater due to competing ions. Overall, the developed chitosan-based PIM with PIL carrier exhibits potential as a membrane system for extraction of TP 2− relevant to PET recycling applications.

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Publication Details

Journal
npj Clean Water
Published
2026-10-05
DOI
https://doi.org/10.1038/s41545-026-00642-y
Primary Topic
Extraction and Separation Processes
Type
article
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article

Extraction of terephthalate from PET-derived sodium terephthalate model solution using a chitosan-based polymer inclusion membrane

Faiz Bukhari Mohd Suah, Ahmad Fikri Adam
npj Clean Water
Extraction and Separation Processes
article

Extraction of terephthalate from PET-derived sodium terephthalate model solution using a chitosan-based polymer inclusion membrane

Faiz Bukhari Mohd Suah, Ahmad Fikri Adam
article en

Abstract

The rise of polyethene terephthalate (PET) has raised environmental concerns. Alkaline hydrolysis enables recovery of terephthalate (TP 2 − ), but efficient separation remains challenging. Thus, the separation method for TP 2 − requires further study. In this study, a chitosan-based polymer inclusion membrane (PIM) incorporating the protic ionic liquid (PIL) 1,5-diazabicyclo[4.3.0]non-5-ene acetate ([DBNH][OAc]) and dioctyl phthalate (DOP) was developed for TP 2− extraction. The membrane was fabricated using a previously reported 3D-printed membrane caster and characterised using FTIR-ATR, SEM-EDX, XRD, TGA, BET, optical microscopy and water uptake capacity (WUC). The screened PIM achieved an extraction efficiency of (82.6 ± 0.15) % with a flux of 7.45 × 10 −6 mg cm −2 s −1 , a permeability coefficient of 1.49 × 10 −4 cm s −1 and retained over 65% efficiency after six cycles, while the recovery efficiency of TP 2- showed a gradual decrease. A small amount of DOP detected in both solutions may partially explain the decreased efficiency observed during repeated use. The extraction in Na 2 TP spiked water (tap water, lake water and seawater) demonstrates low extraction efficiency in seawater due to competing ions. Overall, the developed chitosan-based PIM with PIL carrier exhibits potential as a membrane system for extraction of TP 2− relevant to PET recycling applications.

npj Clean Water
Universiti Sains Malaysia (MY)
Openalex Percentile: Top 21%
Extraction and Separation Processes
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