Institute for Biogeochemistry and Pollutant Dynamics , ETH Zurich , Universitaetstrasse 16 , 8092 Zurich , Switzerland.
Environ Sci Technol. 2019 Oct 1;53(19):11240-11250. doi: 10.1021/acs.est.9b03948. Epub 2019 Sep 20.
Fludioxonil is a pyrrole-containing pesticide whose registration as a plant protection product is currently under review in the United States and Europe. There are concerns over its potential persistence and toxicity in the aquatic environment; however, the pyrrole moiety represents a potential reaction site for indirect photodegradation. In this study, the direct and indirect photodegradation of fludioxonil, along with pyrrole, 3-cyanopyrrole, and 3-phenylpyrrole, were investigated. Results showed that pyrrole moieties are capable of undergoing direct photoionization and sensitized photooxidation to form radical cation species, which then likely deprotonate and react with dissolved oxygen. Additionally, pyrrole moieties can undergo reactions with singlet oxygen (O). Furthermore, the presence of electron-withdrawing or -donating substituents substantially impacted the reaction rate with O as well as the one-electron oxidation potential of the pyrrole that dictates reactions with triplet states of dissolved organic matter (CDOM*). For fludioxonil, which can undergo both direct and indirect photodegradation, the reaction rate constant with O alone resulted in a predicted < 2 days in waters under sunlit near-surface conditions, suggesting it will not be persistent in aquatic systems. These results are useful for evaluating the environmental fate of fludioxonil as well as other pyrrole compounds.
氟啶酮是一种含吡咯的农药,目前正在美国和欧洲进行农药登记审查。人们担心其在水生环境中的潜在持久性和毒性;然而,吡咯部分代表了间接光降解的潜在反应位点。在这项研究中,直接和间接光降解氟啶酮以及吡咯、3-氰基吡咯和 3-苯基吡咯进行了研究。结果表明,吡咯部分能够进行直接光离解和敏化光氧化,形成自由基阳离子物种,然后可能去质子化并与溶解氧反应。此外,吡咯部分可以与单线态氧(O)发生反应。此外,吸电子或供电子取代基的存在显著影响与 O 的反应速率以及决定与溶解有机物质(CDOM*)三重态反应的吡咯的单电子氧化电位。对于可以进行直接和间接光降解的氟啶酮,单独与 O 的反应速率常数导致在阳光充足的近表面条件下的水中预测 <2 天,表明它在水生系统中不会持久。这些结果对于评估氟啶酮以及其他吡咯化合物的环境命运非常有用。