前往化源商城

Environmental Science & Technology 2011-11-15

Photoreduction of chlorothalonil fungicide on plant leaf models.

S Monadjemi, M El Roz, C Richard, A Ter Halle

文献索引:Environ. Sci. Technol. 45(22) , 9582-9, (2011)

全文:HTML全文

摘要

Photodegradation is seldom considered at the surface of vegetation after crop spraying. Chlorothalonil, a broad-spectrum foliar fungicide with a very widespread use worldwide, was considered. To represent the waxy upper layer of leaves, tests were performed within thin paraffin wax films or in n-heptane. Laser flash photolysis together with steady-state irradiation in n-heptane allowed the determination of the photodegradation mechanisms Chlorothalonil ability to produce singlet oxygen was measured; noteworthy its efficiency is close to 100%. Additionally, chlorothalonil photodegradation mainly proceeds through reductive dechlorination. In these hydrophobic media, a radical mechanism was evidenced. Photochemical tests on wax films under simulated solar light show that formulated chlorothalonil is more reactive than pure chlorothalonil. The field-extrapolated half-life of photolysis on vegetation was estimated to 5.3 days. This value was compared to the half-lives of penetration and volatilization available in the literature. It appears that chlorothalonil dissipation from crops is ruled by both photodegradation and penetration. The relative importance of the two paths probably depends on meteorological factors and on physicochemical characteristics of the crop leaf cuticle.

相关化合物

结构式 名称/CAS号 全部文献
正庚烷 结构式 正庚烷
CAS:142-82-5
百菌清 结构式 百菌清
CAS:1897-45-6