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Flow injection analysis of an ultratrace amount of arsenite using a Prussian blue-modified screen-printed electrode

机译:普鲁士蓝修饰丝网印刷电极对超痕量砷的流动注射分析

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We report here a new electrochemical method for the selective detection of ultratrace amount of arsenite (AsO2-, As3+) using a Prussian blue-modified screen-printed electrode (designated as PBSPE) by flow injection analysis (FIA) in 0.1 M, pH 4 KCl/HCl carrier solution. The Prussian yellow/Prussian blue redox couple of the PBSPE was found to mediate the As3+ oxidation. Various factors influencing the determination of As3+ were thoroughly investigated in this study. Under the optimized FIA conditions, a linear calibration plot in the range of 50 nM-300 muM with a detection limit (S/N = 3) of 25 nM (i.e., 64.9 pg in 20-muL loop) was observed at an operation potential of +0.6 V vs Ag/AgCl. The sensitivity was good enough to detect arsenite at levels lower than the current EPA standard. This modified electrode showed good resistance to interference from common ions, especially Cl-, which is generally considered as a major interference in the determination of As3+ by ICPMS. The practical utility of the PBSPE to detect As3+ was demonstrated in "blackfoot" disease endemic village groundwater from the southwestern coast area of Taiwan (Pei-Men). [References: 39]
机译:我们在这里报告了一种新的电化学方法,用于通过流动注射分析(FIA)在0.1 M,pH 4下使用普鲁士蓝修饰的丝网印刷电极(称为PBSPE)选择性检测超痕量砷(AsO2-,As3 +)。 KCl / HCl载体溶液。发现PBSPE的普鲁士黄/普鲁士蓝氧化还原对介导As 3+氧化。在这项研究中彻底调查了影响As3 +测定的各种因素。在优化的FIA条件下,在操作电位下观察到的线性校准图在50 nM-300μM范围内,检出限(S / N = 3)为25 nM(即20μL回路中为64.9 pg)相对于Ag / AgCl为+0.6 V.灵敏度足以检测到低于当前EPA标准的亚砷酸盐。这种修饰的电极显示出良好的抗常见离子(尤其是Cl-)干扰的能力,通常认为这是通过ICPMS测定As3 +的主要干扰。在台湾西南海岸地区的“黑脚”病流行乡村地下水中证实了PBSPE检测As3 +的实用性。 [参考:39]

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