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Effect of Fe~(2+) amendment on photodegradation kinetics of imidacloprid in moist soil

机译:Fe〜(2+)改性剂对潮湿土壤中吡虫啉光降解动力学的影响

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The present study deals with the effect of Fe~(2+) on degradation kinetics of imidacloprid in moist soil under UV system. The moist soil samples were spiked with imidacloprid and irradiated in specially designed UV-photoreactor. The analysis of imidacloprid was carried out by using HPLC-DAD system. UV irradiation caused about ten fold increase in photodegradation rate of the pesticide. Amendment of soil with Fe~(2+) at concentrations of 30 mg/kg led to a further increase in the rate of photodegradation, i.e., a 98 % degradation of imidacloprid was observed in the presence of iron after 32 days of irradiation. Moreover, the half-life of imidacloprid in Fe~(2+)-amended soil was observed to be reduced to 7 days that in the absence of Fe~(2+) was recorded to be 21 days. Iron was also observed to affect the half-life of imidacloprid in dark. When compared with unsterilized Fe~(2+)-amended batch treatments, the t_(1/2) sterilized Fe~(2+) -amended batch treatments increased from 58 to 96 days. Imidacloprid-urea was detected by HPLC as the only stable photodegradation byproduct of imidacloprid in the soil.
机译:本研究探讨了紫外线对Fe〜(2+)对吡虫啉在潮湿土壤中降解动力学的影响。在潮湿的土壤样品中掺入吡虫啉,并在专门设计的紫外线光反应器中辐照。吡虫啉的分析通过HPLC-DAD系统进行。紫外线照射使农药的光降解速率提高了约十倍。用浓度为30 mg / kg的Fe〜(2+)修正土壤导致光降解速率进一步提高,即在照射32天后在铁存在下观察到吡虫啉98%的降解。此外,观察到吡虫啉在Fe〜(2+)修饰的土壤中的半衰期减少到7天,而没有Fe〜(2+)的记录为21天。还观察到铁在黑暗中会影响吡虫啉的半衰期。与未经灭菌的Fe〜(2+)修正的批处理相比,经t_(1/2)灭菌的Fe〜(2+)修正的批处理从58天增加到96天。高效液相色谱法检测到吡虫啉-脲是吡虫啉在土壤中唯一稳定的光降解副产物。

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