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Development and Validation of Chronopotentiometric Method for Imidacloprid Determination in Pesticide Formulations and River Water Samples

机译:农药制剂和河水样品中吡虫啉测定的计时电位法的建立和验证

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摘要

A new electrochemical method for determination of imidacloprid using chronopotentiometry on thin film mercury and glassy carbon electrode was presented. The most important experimental parameters of chronopotentiometry were examined and optimized with respect to imidacloprid analytical signal. Imidacloprid provided well-defined reduction peak in Britton-Robinson buffer on thin film mercury electrode at −1.0 V (versus Ag/AgCl (KCl, 3.5 mol/L)) and on glassy carbon electrode at −1.2 V (versus Ag/AgCl (KCl, 3.5 mol/L)). The reduction time was linearly proportional to concentrations from 0.8 to 30.0 mg/L on thin film mercury electrode and from 7.0 to 70.0 mg/L on glassy carbon electrode. The detection limits were 0.17 mg/L and 0.93 mg/L for thin film mercury and glassy carbon electrode, respectively. The estimation of method precision as a function of repeatability and reproducibility showed relative standard deviations values lower than 3.73%. Recovery values from 97.3 to 98.1% confirmed the accuracy of the proposed method, while the constancy of the transition time with deliberated small changes in the experimental parameters indicated a very good robustness. A minor influence of possible interfering compounds proved good selectivity of the method. Developed method was applied for imidacloprid determination in commercial pesticide formulations and river water samples.
机译:提出了一种用计时电位法测定薄膜汞和玻璃碳电极上吡虫啉的新方法。计时电位法最重要的实验参数已针对吡虫啉分析信号进行了检查和优化。吡虫啉在Britton-Robinson缓冲液中的薄膜汞电极上在-1.0 V(相对于Ag / AgCl(KCl,3.5 mol / L))和在玻碳电极上的-1.2 V(相对于Ag / AgCl( KCl,3.5?mol / L))。还原时间与薄膜汞电极上浓度从0.8到30.0μmg/ L和玻璃碳电极上浓度从7.0到70.0μmg/ L成线性比例。薄膜汞和玻璃碳电极的检出限分别为0.17μg/ L和0.93μg/ L。根据重复性和重现性对方法精度的估计表明,相对标准偏差值低于3.73%。从97.3%到98.1%的回收率值证实了所提方法的准确性,而实验参数经过精心设计的小幅度变化所带来的稳定的过渡时间则表明该方法具有很好的鲁棒性。可能的干扰化合物的较小影响证明了该方法的良好选择性。所开发的方法用于商业农药制剂和河水样品中吡虫啉的测定。

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