Millet M, Palm W U, Zetzsch C
Abteilung Atmosphärische Chemie, Fraunhofer Institut für Toxikologie und Aerosolforschung, Nikolai-Fuchs Strasse 1, Hannover, 30625, Germany.
Ecotoxicol Environ Saf. 1998 Sep;41(1):44-50. doi: 10.1006/eesa.1998.1665.
This paper presents first experiments of laboratory investigations of the photodegradation by direct photolysis (lambda>290 nm) of cholorotahlonil, dichlobenil, chloroxynil, bromoxynil, and ioxynil in aqueous, pH-buffered, and organic solutions and the calculation of the quantum yields. The photolysis of chlorothalonil in water is low, with a corresponding low quantum yield (Phi=0.0001). Dichlobenil is photostable under the laboratory conditions used. The photoreactivity of bromoxynil and ioxynil was found to be comparable in aqueous solutions and about three times lower with respect to chloroxynil. The quantum yields obtained in water of chloroxynil, bromoxynil, and ioxynil are Phi=0.0060, 0.0093, and 0.0024, respectively. Half-lives of the pesticides in the environment with respect to direct irradiation are estimated using UV spectra and quantum yields as input variables obtained in the laboratory.
本文介绍了在水相、pH缓冲溶液和有机溶液中,通过直接光解(λ>290nm)对百菌清、二氯苯腈、溴苯腈、碘苯腈进行光降解的实验室研究的首次实验,以及量子产率的计算。百菌清在水中的光解作用较弱,相应的量子产率较低(Φ=0.0001)。在所用实验室条件下,二氯苯腈具有光稳定性。发现在水溶液中溴苯腈和碘苯腈的光反应活性相当,相对于溴氯腈约低三倍。在水中获得的溴氯腈、溴苯腈和碘苯腈的量子产率分别为Φ=0.0060、0.0093和0.0024。使用在实验室获得的紫外光谱和量子产率作为输入变量,估算了农药在环境中相对于直接照射的半衰期。