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The cyclic renewable mercury film silver based electrode for determination of Uranium(VI) traces using adsorptive stripping voltammetry

机译:吸附溶出伏安法测定痕量铀(VI)的循环可再生汞膜银基电极

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The new cyclic renewable mercury film silver based electrode (Hg(Ag)FE), applied for the determination of uranium(VI) traces using differential pulse adsorptive cathodic stripping voltammetry (DPAdCSV) is presented. The Hg(Ag)FE electrode with a surface area adjustable from 1.1 to 12 mm(2) is characterized by very good surface reproducibility (<= 2%) and long-term stability (more than 2 thousand measurement cycles). The mechanical refreshing of mercury film is realized in the simple constructed device, in a time shorter than 1-2 seconds. The effects of various factors such as: preconcentration potential and time, pulse height, step potential and supporting electrolyte composition are optimized. The calibration graph is linear from 0.4 nM (95 ng L-1) to 250 nM (60 mu g L-1) for an accumulation time of t(acc) = 20 s, with correlation coefficient of 0.9996. For a Hg(Ag)FE with a surface area of 2.7 mm(2) the detection limit for an accumulation time of 120 s is as low as 12 ng L-1. The repeatability of the method at a concentration level of the analyte as low as 2.4 mu g L-1, expressed as RSD is 2.5% (n = 7). The proposed method was successfully applied and validated by studying the recovery of U(VI) from spiked river water and sediment samples.
机译:提出了一种新型的循环可再生汞薄膜银基电极(Hg(Ag)FE),该电极用于使用差分脉冲吸附阴极溶出伏安法(DPAdCSV)测定铀(VI)痕量。 Hg(Ag)FE电极的表面积可在1.1至12 mm(2)之间调节,其特点是具有非常好的表面重现性(<= 2%)和长期稳定性(超过2000个测量周期)。汞膜的机械更新是在结构简单的设备中实现的,时间少于1-2秒。优化了各种因素的影响,例如:预浓缩电势和时间,脉冲高度,阶跃电势和支持电解质组成。校正图在0.4 nM(95 ng L-1)至250 nM(60μg L-1)之间呈线性关系,累积时间为t(acc)= 20 s,相关系数为0.9996。对于表面积为2.7 mm(2)的Hg(Ag)FE,累积时间为120 s的检测极限低至12 ng L-1。该方法在分析物浓度低至2.4μg L-1(以RSD表示)时的重复性为2.5%(n = 7)。通过研究加标河水和沉积物样品中U(VI)的回收率,成功地应用和验证了该方法。

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