Issue 42, 2024

Mechanism and toxicity assessment of carbofuran degradation by persulfate-based advanced oxidation process

Abstract

The advanced oxidation process based on persulfate has been proven to be a promising method for degrading the highly toxic carbamate pesticide carbofuran (CBF). However, the mechanism of CBF degradation by sulfate radicals (SO4·) and hydroxyl radicals (·OH) is still unclear and requires further research and discussion. This study investigated the mechanism and toxicity assessment of CBF degradation using density functional theory (DFT) theory calculation methods. The results indicated that SO4· and ·OH can undergo addition and abstraction reactions with CBF. Thermodynamic and kinetic analysis showed that the abstraction reaction between SO4· and the secondary H atom is the optimal reaction pathway, exhibiting the highest branching ratio (Γ = 41.84%). The rate constants for the reactions of CBF with SO4· and ·OH at room temperature were found to be 3.66 × 109 and 8.96 × 108 M−1 s−1, respectively, which are consistent with experimental data reported in previous studies. The acute and chronic toxicity of CBF and its degradation products to aquatic organisms was predicted through an ecological toxicity assessment model. The toxicity of the degradation products was lower than that of the parent CBF, confirming the viability of using persulfate-based advanced oxidation processes for water treatment.

Graphical abstract: Mechanism and toxicity assessment of carbofuran degradation by persulfate-based advanced oxidation process

Supplementary files

Article information

Article type
Paper
Submitted
24 Jul 2024
Accepted
19 Sep 2024
First published
24 Sep 2024
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2024,14, 30582-30589

Mechanism and toxicity assessment of carbofuran degradation by persulfate-based advanced oxidation process

C. Zhang, Y. Xu, B. Chu and X. Sun, RSC Adv., 2024, 14, 30582 DOI: 10.1039/D4RA05365F

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