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Determination of Chromium in Natural Water by Adsorptive Stripping Voltammetry Using In Situ Bismuth Film Electrode

机译:用原位铋薄膜电极测定吸附剥离伏安法测定天然水中铬

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Development of adsorptive stripping voltammetry (AdSV) combined with in situ prepared bismuth film electrode (in situ BiFE) on glassy carbon disk surface using diethylenetriamine pentaacetic acid (DTPA) as a complexing agent and NO3? as a catalyst to determine the trace amount of chromium (VI) is demonstrated. According to this method, in the preconcentration step at Edep?=??800?mV, the bismuth film is coated on the surface of glassy carbon electrodes simultaneously with the adsorption of complexes Cr(III)-DTPA. In addition to the influencing factors, the stripping voltammetry performance factors such as deposition potential, deposition time, equilibration time, cleaning potential, cleaning time, and technical parameters of differential pulse and square wave voltammetries have been investigated, and the influence of Cr(III), Co(II), Ni(II), Ca(II), Fe(III), SO42?, Cl?, and Triton X has also been investigated. This method gained good repeatability with RSD 4% (n?=?9) for the differential pulse adsorptive stripping voltammetry (DP-AdSV) and RSD??3% (n?=?7) for the square wave adsorptive stripping voltammetry (SqW-AdSV), and low limit of detection: LOD?=?12.10?9?M?≈?0.6?ppb (at a deposition potential (Edep) of ?800?mV and the deposition time (tdep) of 50?s) and LOD?=?2.10?9?M?≈?0.1?ppb (at Edep?=??800?mV and tdep?=?160?s) for the DP-AdSV and SqW-AdSV, respectively. This method has been successfully applied to analyze chromium in natural water.
机译:使用二亚乙基三胺五乙酸(DTPA)作为络合剂和NO3,在玻璃碳盘表面上与原位制备的铋薄膜电极(原位BIFE)相结合的玻璃状碳盘表面的研制。作为确定致痕量的铬(VI)的催化剂。根据该方法,在EDEP的前浓缩步骤中?= ?? 800?MV,与复合物Cr(III)-DTPA的吸附同时涂覆在玻碳电极表面上的铋膜。除了影响因素之外,还研究了剥离伏安法性能因素,例如沉积电位,沉积时间,平衡时间,清洁电位,清洁时间和差分脉冲和方波伏叠的技术参数,以及Cr的影响(III ),CO(II),Ni(II),Ca(II),Fe(III),Fe(III),SO42α,Cl-α,Cl-α,和X也已经研究过。该方法对差分脉冲吸附剥离伏安法(DP-ADSV)和RSDα<3%(n =Δ7)的RSD <4%(n≤x≤9)获得了良好的重复性,用于方波吸附剥离伏安法(SQW-ADSV)和低限制的检测限:LOD?=?12.10?9?M?≈α0.6?PPB(在沉积电位(EDEP)的沉积电位和沉积时间(TDEP)为50? s)和lod?=?2.10?9?m?≈α0.1?ppb该方法已成功应用于分析天然水中的铬。

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