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April 17, 2026Agrochemicals0 citationsOpen Access

Decomposition Rate and Microplastic Residue Formation of Photodegradable Resin-Coated Controlled-Release Fertilizers (CRFs)

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HJHyeong-Wook JoJLJoon-Seok LeeIJIl Jang

Key Points

  • The aim is to examine how different polymer-coated fertilizers decompose and whether they leave behind microplastic residues.
  • Analyzed decomposition kinetics under simulated photodegradation with xenon-arc irradiation.
  • Evaluated materials using TED-GC/MS, FTIR, Raman spectroscopy, and SEM–EDS.
  • Compared two types of controlled-release fertilizers: Eco-LN40 and LN40.
  • Eco-LN40 experienced 100% decomposition after 60 days; LN40 only showed 14-31%.
  • Microplastic residues formed from LN40 but not from Eco-LN40, which fully oxidized to CO2 and H2O.
  • TiO2 in Eco-LN40 facilitated the complete breakdown of polymer materials.

Abstract

This study investigates the decomposition kinetics and microplastic residue formation of the polymer-coated controlled-release fertilizers (CRFs) LN40 and Eco-LN40 under simulated photodegradation conditions. Eco-LN40, containing TiO2 as a photocatalyst, achieved complete decomposition (100 ± 2%) after 60 days of xenon-arc irradiation (p < 0.05), whereas LN40 achieved only 14–31% decomposition. Analytical characterization using TED-GC/MS, FTIR, and Raman spectroscopy confirmed that polyethylene (PE) signals completely disappeared in Eco-LN40 but persisted in LN40, indicating that microplastics did not form and that there was total oxidation into CO2 and H2O. SEM–EDS revealed Ti enrichment and surface fragmentation consistent with photoinduced radical oxidation. This study provides qualitative and mechanistic evidence that TiO-catalyzed photodegradation can eliminate polymer residues, mitigate the risk of microplastic contamination in agricultural soils, and support carbon-neutral fertilizer technologies.

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Cite This Study

Jo et al. (2026) studied this question.

synapsesocial.com/papers/69e1cfe05cdc762e9d858eaehttps://doi.org/10.3390/agrochemicals5020020
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