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首页> 外文期刊>International journal of environmental analytical chemistry >Voltammetric determination of herbicide molinate in river water and rice samples using solid silver amalgam electrode fabricated with nanoparticles
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Voltammetric determination of herbicide molinate in river water and rice samples using solid silver amalgam electrode fabricated with nanoparticles

机译:用纳米粒子制备的固态银汞合金电极伏安法测定河水和稻米中的除草剂残留量。

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The evaluation of the voltammetric behaviour and the determination of herbicide molinate were performed for the first time over the surface of solid amalgam electrode fabricated with silver nanoparticles using cyclic voltammetry and square-wave voltammetry techniques. The experimental and instrumental parameters were evaluated to reach the maximum analytical response for molinate. It was achieved when a medium composed of 0.04molL(-1) Britton-Robinson buffer at the pH value of 4.0 was used. Under these conditions, molinate showed one pronounced reduction peak at E-p=-0.37V (vs. Ag/AgCl 3molL(-1)) that was characterised as an irreversible system. An analytical curve was constructed at the concentration range from 9.36 to 243.49 mu gL(-1) and a limit of detection of 2.34 mu gL(-1) was obtained. The amalgam electrode presented good stability during the measurements with relative standard deviation (RSD) values of 2.9% for the repeatability and 5.4% for the reproducibility. The voltammetric method developed here could be conveniently applied for the determination of molinate in river water and rice spiked samples at levels below those established on the legislations of European Union and Brazil with good accuracy (RSD of less than 5% for all samples). Comparison with HPLC technique was carried out and the results indicated satisfactory concordance. According to the results depicted here, the silver nanoparticles solid amalgam electrode showed itself highly sensitive and an interesting alternative for the routine analysis of molinate in water and food samples. Furthermore, it introduces an environmentally acceptable alternative to the mercury electrodes, most commonly used for determination of reducible pesticides.
机译:使用循环伏安法和方波伏安法,首次在由银纳米颗粒制成的固体汞齐电极表面上进行了伏安行为的评估和除草剂草酸盐的测定。对实验和仪器参数进行了评估,以达到最大的分析响应。当使用由0.04molL(-1)Britton-Robinson缓冲液组成的pH值为4.0的介质时,可以实现此目的。在这些条件下,草酸盐在E-p = -0.37V(vs。Ag / AgCl 3molL(-1))处显示出一个明显的还原峰,该峰表征为不可逆系统。在9.36至243.49μgL(-1)的浓度范围内绘制分析曲线,检出限为2.34μgL(-1)。汞齐电极在测量过程中表现出良好的稳定性,相对标准偏差(RSD)值的可重复性为2.9%,可重复性为5.4%。此处开发的伏安法可方便地用于测定低于欧盟和巴西法规规定的水平的河水和大米加标样品中的lin酸盐(所有样品的RSD均低于5%)。与HPLC技术进行比较,结果表明令人满意的一致性。根据此处描述的结果,银纳米颗粒固体汞齐电极显示出高度灵敏的特性,是水和食物样品中lin酸盐常规分析的有趣替代方法。此外,它为汞电极引入了一种环境可接受的替代方法,该电极最常用于测定可还原农药。

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