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Sunlight transformation of sethoxydim-lithium in natural waters and effect of humic acids

机译:天然水中的脱氧乙二胺锂的阳光转化和腐殖酸的影响

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Photochemical behaviour of sethoxydim-lithium, a cyclohexanedione oxime herbicide, has been investigated in ultrapure and natural waters (mineral, well and river water). Photodegradation experiments were carried out under laboratory conditions using a solar silulator (Suntest equipment) and under natural solar irradiation in order to evaluate reaction kinetics of the active ingredient. Besides, the effect of humic acids (HA) on the degradation rate under simulated solar radiation was also studied. The photodegradation rates of sethoxydim-lithium in all the different waters and light sources studied followed first-order kinetics. Results showed that dark reactions were negligible. Experimental data showed that half-lives of the herbicide under simulated irradiation were higher in natural waters than in ultrapure, showing the lowest degradation rate in river water (t_(1/2)= 135.5 ±0.3 min). Under natural sunlight, sethoxydim-lithium photodegradation followed the same behaviour, with half-lives that range from 82 to 437 min for ultrapure and river water respectively, showing a strong dependence on the composition of water. However, rates of degradation of sethoxydim-lithium were faster under simulated radiation compared to natural sunlight (e.g. t_(1/2) (ultrapure water) 59.8 ± 0.2 min vs. 82.1 ± 0.7 min). The presence of different concentrations of HA (1-20 mgL~(-1)) retarded the photolytic degradation relative to ultrapure water with half-lives from 92 to 196 min.
机译:在超纯水和天然水(矿泉水,井水和河水中)中,已研究了环己二酮肟除草剂-脱氧乙二胺锂的光化学行为。为了评估活性成分的反应动力学,在实验室条件下使用太阳能粉碎机(Suntest设备)和在自然阳光照射下进行了光降解实验。此外,还研究了腐殖酸(HA)对模拟太阳辐射下降解速率的影响。所研究的所有不同水域和光源中,脱氧乙二胺锂的光降解速率遵循一阶动力学。结果表明,黑暗反应可以忽略不计。实验数据表明,在模拟辐射下,天然水中除草剂的半衰期高于超纯水,在河水中降解率最低(t_(1/2)= 135.5±0.3 min)。在自然阳光下,脱氧乙二胺-锂的光降解遵循相同的行为,超纯水和河水的半衰期分别为82至437分钟,这显示出对水成分的强烈依赖性。但是,与自然阳光相比,在模拟辐射下,脱氧乙二胺锂的降解速率更快(例如t_(1/2)(超纯水)59.8±0.2分钟vs.82.1±0.7分钟)。相对于超纯水,不同浓度的HA(1-20 mgL〜(-1))的存在会延迟光解降解,半衰期为92至196分钟。

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