首页> 外文期刊>Journal of Agricultural and Food Chemistry >Photolytic degradation of florasulam on soil and in water.
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Photolytic degradation of florasulam on soil and in water.

机译:植物素在土壤和水中的光降解。

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The rate and pathway of degradation in the presence of light for the triazolopyrimidine herbicide florasulam was determined on soil and in aqueous systems. Florasulam was exposed to natural sunlight for up to 32 days; solar irradiance was measured with either chemical actinometers or by radiometry. The quantum yield for direct photodegradation in a sterile, buffered aqueous solution was determined to be 0.096; an analogous quantum yield for the sum of direct and indirect photodegradation on soil was 0.245. The quantum yields were used to estimate half-lives due to photodegradation as a function of season and temperature. Estimated half-lives due to photodegradation in summer at 40 degrees N latitude were 14 days on soil and 36 days in sterile, buffered water. Photodegradation was much faster in a natural water system, with a measured half-life of 3.3 days in summer at 51.5 degrees N latitude, indicating that indirect photolytic processes will be important contributors to photodegradation of florasulam in aqueous environments.
机译:确定了在土壤和水性体系中三唑并嘧啶除草剂florasulam在光照下的降解速率和途径。 Florasulam暴露于自然阳光下长达32天;太阳辐照度用化学光度计或放射线法测量。在无菌的缓冲水溶液中进行直接光降解的量子产率确定为0.096;在土壤上直接和间接光降解之和的类似量子产率为0.245。量子产率被用来估计由于光降解而引起的半衰期与季节和温度的关系。在夏季,由于在北纬40度的光降解,估计的半衰期在土壤上为14天,在无菌缓冲水中为36天。在自然水系统中,光降解的速度要快得多,在北纬51.5度的夏季,其测得的半衰期为3.3天,这表明间接的光解过程将是水环境中植物素的光降解的重要因素。

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