Next Article in Journal
Reversible Thermochemical Routes for Carbon Neutrality: A Review of CO2 Methanation and Steam Methane Reforming
Previous Article in Journal
Monte Carlo Investigation of Orientation-Dependent Percolation Networks in Carbon Nanotube-Based Conductive Polymer Composites
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Review

Depolymerization to Decontamination: Transforming PET Waste into Tailored MOFs for Advanced Pollutant Adsorption

1
Renewable Energies Chair, Polo da Mitra da Universidade de Évora, 7000-083 Nossa Senhora da Tourega, Portugal
2
Laboratory of Composite Materials and Clay Minerals (LMCMA), CNRSM-Technopole, Borj Cédria, University of Carthage, Mateur 7030, Tunisia
*
Author to whom correspondence should be addressed.
Physchem 2025, 5(3), 28; https://doi.org/10.3390/physchem5030028
Submission received: 25 May 2025 / Revised: 4 July 2025 / Accepted: 11 July 2025 / Published: 19 July 2025
(This article belongs to the Section Surface Science)

Abstract

Plastic waste and water pollution demand circular economy-driven innovations. This review examines metal–organic framework (MOF) synthesis from polyethylene terephthalate (PET) waste for wastewater treatment. Depolymerized PET yields terephthalic acid and ethylene glycol—essential MOF precursors. We evaluate the following: (1) PET depolymerization (hydrolysis, glycolysis, ammonolysis) for monomer recovery efficiency; (2) MOF synthesis (solvothermal, microwave, mechanochemical) using PET-derived linkers; (3) performance in adsorbing heavy metals, dyes, and emerging contaminants. PET-based MOFs match or exceed commercial adsorbents in pollutant removal while lowering costs. Their tunable porosity and surface chemistry enhance selectivity and capacity. By converting waste plastics into functional materials, this strategy tackles dual challenges: diverting PET from landfills and purifying water. The review underscores the environmental and economic benefits of waste-sourced MOFs, proposing scalable routes for sustainable water remediation aligned with zero-waste goals.
Keywords: PET waste; MOF; wastewater treatment; PET monomer; heavy metal; dyes; pesticides; emergent pollutants PET waste; MOF; wastewater treatment; PET monomer; heavy metal; dyes; pesticides; emergent pollutants

Share and Cite

MDPI and ACS Style

Nouira, A.; Bekri-Abbes, I. Depolymerization to Decontamination: Transforming PET Waste into Tailored MOFs for Advanced Pollutant Adsorption. Physchem 2025, 5, 28. https://doi.org/10.3390/physchem5030028

AMA Style

Nouira A, Bekri-Abbes I. Depolymerization to Decontamination: Transforming PET Waste into Tailored MOFs for Advanced Pollutant Adsorption. Physchem. 2025; 5(3):28. https://doi.org/10.3390/physchem5030028

Chicago/Turabian Style

Nouira, Asma, and Imene Bekri-Abbes. 2025. "Depolymerization to Decontamination: Transforming PET Waste into Tailored MOFs for Advanced Pollutant Adsorption" Physchem 5, no. 3: 28. https://doi.org/10.3390/physchem5030028

APA Style

Nouira, A., & Bekri-Abbes, I. (2025). Depolymerization to Decontamination: Transforming PET Waste into Tailored MOFs for Advanced Pollutant Adsorption. Physchem, 5(3), 28. https://doi.org/10.3390/physchem5030028

Article Metrics

Back to TopTop