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Bochi Yu a, Yanli Man a, Gabriel Sigmund b, Pingping Wang a, Jun Xie a, Wei Wang a, Lan Zhang a, Liangang Mao a, Lizhen Zhu a, Chi Wu a, Xingang Liu.Identification of Dufulin photolysis and hydrolysis products in water using a 13C stable isotope assisted HPLC-HRMS strategy.

文章来源:Water Research        点击数: 次      发布时间:2025-02-13


Water Research,2025,https://doi.org/10.1016/j.watres.2025.123150

Abstract

Dufulin is an efficient antiviral agent for plants, however, data on its environmental fate, particularly concerning its transformation products (TPs), remain scarce. The TPs formed during abiotic degradation may pose significant environmental risks due to potential toxicity. Therefore, this study systematically investigated the hydrolysis and photolysis kinetics of Dufulin in aqueous solutions across various pH conditions. By employing HPLC-HRMS and 13C stable isotope labeling, we identified and quantified Dufulin and its degradation products. The results indicated that Dufulin undergoes accelerated photolysis under both acidic and alkaline conditions, while hydrolysis, although less influenced by pH, was comparatively slower than photolysis. Six TPs were identified and confirmed, five of which were reported for the first time. Moreover, abiotic transformation pathways of Dufulin in water were proposed. Predictions by the ECOSAR software indicated that the toxicity of two of the identified TPs was higher than that of the parent compound, meriting further assessment. These findings provide crucial insights into the environmental risks associated with Dufulin and underscore the scientific validity of using HPLC-HRMS combined with 13C stable isotope labeling for TP identification.

Water Research,IF=13.4

https://doi.org/10.1016/j.watres.2025.123150