首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A new generation of cyanide ion-selective membranes for flow injection application - Part III. A simple approach to the determination of toxic metal-cyanide complexes without preliminary separation
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A new generation of cyanide ion-selective membranes for flow injection application - Part III. A simple approach to the determination of toxic metal-cyanide complexes without preliminary separation

机译:用于流动注射的新一代氰化物离子选择性膜-第三部分。一种无需预先分离即可测定有毒金属氰化物络合物的简单方法

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A new flow injection approach to total weak acid-dissociable (WAD) metal-cyanide complexes is proposed, which eliminates the need of a separation step (such as gas diffusion or pervaporation) prior to the detection. The cornerstone of the new methodology is based on the highly selective flow-injection potentiometric detection (FIPD) system that makes use of thin-layer electroplated silver chalcogenide ion-selective membranes of non-trivial composition and surface morphology: Ag2+delta Se1-xTex and Ag2+delta Se. An inherent feature of the FIP-detectors is their specific response to the sum of simple CN- + Zn(CN)(4)(2-) + Cd(CN)(4)(2-). For total WAD cyanide determination, ligand exchange (LE) and a newly developed electrochemical pre-treatment procedure for release of the bound cyanide were used. The LE pre-treatment ensures complete recovery only when the sample does not contain Hg(CN)(4)(2-). This limitation is overcome by implementing electrochemical pre-treatment which liberates completely the bound WAD cyanide through cathodic reduction of the complexed metal ions. A complete recovery of toxic WAD cyanide is achieved in the concentration range from 156 mu g L-1 up to 13 mg L-1. A three-step protocol for individual and group WAD cyanide speciation is proposed for the first time. The speciation protocol comprises three successive measurements: (i) of non-treated, (ii) LE-exchange pre-treated; (iii) electrochemically pre-treated sample. In the presence of all WAD complexes this procedure provides complete recovery of the total bound cyanide along with its quantitative differentiation into the following groups: (1) Hg(CN)(4)(2-): (2) CN- + Cd(CN)(4)(2-) + Zn(CN)(4)(2-); (3) Cu(CN)(4)(3-) + Ni(CN)(4)(2-) + Ag(CN)(2)(-). The presence of a 100-fold excess in total of the following ions: CO32-, SCN-, NH4+, SO42- and Cl- does not interferes. Thus the proposed approach offers a step ahead to meeting the ever increasing demand for cyanide-species-specific methods. The equipment simplicity makes the procedure a good candidate for implementing in portable devices for in-field cyanide monitoring. (C) 2008 Elsevier B.V. All rights reserved.
机译:提出了一种用于总弱酸可解离(WAD)金属氰化物络合物的新流动注射方法,该方法无需在检测之前进行分离步骤(例如气体扩散或全蒸发)。新方法的基础是基于高度选择性的流动注射电位检测(FIPD)系统,该系统利用了具有重要组成和表面形态的薄层电镀硫属元素化银离子选择性膜:Ag2 + delta Se1-xTex和Ag2 +δSe。 FIP检测器的固有特征是它们对简单CN- + Zn(CN)(4)(2-)+ Cd(CN)(4)(2-)的总和的特定响应。对于总WAD氰化物的测定,使用了配体交换(LE)和新开发的用于释放结合的氰化物的电化学预处理程序。仅当样品不含Hg(CN)(4)(2-)时,LE预处理才能确保完全回收。通过实施电化学预处理可以克服这一限制,该电化学预处理通过络合金属离子的阴极还原完全释放出结合的WAD氰化物。在156μg L-1至13 mg L-1的浓度范围内,可以完全回收有毒的WAD氰化物。首次提出了针对个人和团体WAD氰化物形成的三步协议。物种形成方案包括三个连续的测量:(i)未经处理的;(ii)预处理的LE-exchange; (iii)电化学预处理的样品。在所有WAD络合物的存在下,此程序可完全回收总结合的氰化物,并将其定量分为以下几类:(1)Hg(CN)(4)(2-):(2)CN- + Cd( CN)(4)(2-)+ Zn(CN)(4)(2-); (3)Cu(CN)(4)(3-)+ Ni(CN)(4)(2-)+ Ag(CN)(2)(-)。下列离子的总计过量100倍存在:CO32-,SCN-,NH4 +,SO42-和Cl-不会干扰。因此,所提出的方法为满足针对特定氰化物物种的方法不断增长的需求提供了前进的一步。设备的简单性使该程序成为在便携式设备中进行现场氰化物监测的良好选择。 (C)2008 Elsevier B.V.保留所有权利。

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