Unit of Plant Protection Products, INIA, Ctra. La Coruña, Km. 7.5, 28040 Madrid, Spain.
Ingeniería Química, Facultad de Ciencias, Universidad Autónoma de Madrid, Cantoblanco, 28049 Madrid, Spain.
Sci Total Environ. 2018 Feb 15;615:643-651. doi: 10.1016/j.scitotenv.2017.09.300. Epub 2017 Oct 17.
The photochemical fate of the herbicide clethodim in natural waters was investigated under simulated and natural sunlight radiation. This herbicide exhibited a rapid degradation rate in simulated aquatic environment with half-lives ranged from 27.9min to 4.6h. The commercial formulation of clethodim showed a faster degradation with half-lives from 19.3min to 1.4h. It has also been demonstrated that the photolytic behavior of clethodim was affected by the water composition and the radiation intensity. Nine major photoproducts were identified and their distribution was dependent on the experimental conditions. Photodegraded solutions of clethodim were shown to be more toxic to the bacteria Vibrio fischeri than the herbicide itself, reaching the maximum toxicity when the herbicide is completely degraded. QSAR analysis of the fate, ecotoxicological and physicochemical endpoints of the degradation products provided positive alerts for several identified by-products. Environmental fate and transport estimates showed that all photoproducts, unlike the active substance, are potential leachers. Moreover, predicted vapor pressures suggested that dermal contact and ingestion are the most probable exposure routes for workers and general population to both clethodim and its photoproducts. These results highlight the importance of the degradation products in attaining a complete knowledge of the fate and behavior of an herbicide in the environment. To our knowledge, this is the first study to report a detailed QSAR study on clethodim photoproducts under environmental conditions. These results provide a very valuable information that will guide further experimental studies leading to a better pesticide risk assessment.
在模拟和自然阳光辐射下研究了除草剂草铵膦在天然水中的光化学命运。该除草剂在模拟水生环境中具有快速降解率,半衰期范围从 27.9 分钟到 4.6 小时。草铵膦的商业制剂表现出更快的降解,半衰期从 19.3 分钟到 1.4 小时。还证明了草铵膦的光解行为受水组成和辐射强度的影响。鉴定了 9 种主要光产物,其分布取决于实验条件。草铵膦光降解溶液对细菌发光菌的毒性比除草剂本身更大,当除草剂完全降解时,毒性达到最大值。降解产物的命运、生态毒理学和物理化学终点的 QSAR 分析对几个鉴定的副产物提供了积极的警示。环境归宿和传输估计表明,与活性物质不同,所有光产物都是潜在的浸出物。此外,预测的蒸气压表明,皮肤接触和摄入是工人和一般人群接触草铵膦及其光产物的最可能暴露途径。这些结果强调了在环境中获得除草剂的完全命运和行为知识时降解产物的重要性。据我们所知,这是第一项在环境条件下报告草铵膦光产物详细 QSAR 研究的研究。这些结果提供了非常有价值的信息,将指导进一步的实验研究,以实现更好的农药风险评估。