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Stripping voltammetric determination of palladium, platinum and rhodium in freshwater and sediment samples from South African water resources

机译:溶出伏安法测定南非水资源中淡水和沉积物样品中的钯,铂和铑

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摘要

Stripping voltammetry as technique has proved to be very useful in the analysis of heavy and other metal ions due to its excellent detection limits and its sensitivity in the presence of different metal species or interfering ions. Recent assessments of aquatic samples have shown increased levels of platinum group metals (PGMs) in aquatic ecosystems, caused by automobile exhaust emissions and mining activities. The development of an analytical sensor for the detection and characterisation of PGMs were investigated, since there is an ongoing need to find new sensing materials with suitable recognition elements that can respond selectively and reversibly to specific metal ions in environmental samples. The work reported shows the successful application of another mercury-free sensor electrode for the determination of platinum group metals in environmental samples. The work reported in this study entails the use of a glassy carbon electrode modified with a bismuth film for the determination of platinum (Pt~(2+)), palladium (Pd~(2+)) or rhodium (Rh~(2+)) by means of adsorptive cathodic stripping voltammetry. Optimised experimental conditions included composition of the supporting electrolyte, complexing agent concentration, deposition potential, deposition time and instrumental voltammetry parameters for Pt~(2+), Pd~(2+) and Rh~(2+) determination. Adsorptive differential pulse stripping voltammetric measurements for PGMs were performed in the presence of dimethylglyoxime (DMG) as complexing agent. The glassy carbon bismuth film electrode (GC/BiFE) employed in this study exhibit good and reproducible sensor characteristics. Application of GC/BiFE sensor exhibited well-defined peaks and highly linear behaviour for the stripping analysis of the PGMs in the concentration range between 0 and 3.5 μg/L. The detection limit of Pd, Pt and Rh was found to be 0.12 μg/L, 0.04 μg/L and 0.23 μg/L, respectively for the deposition times of 90 s (Pd) and 150 s (for both Pt and Rh). Good reproducibility was also observed and the practical applicability of the sensor was demonstrated with the analysis of environmental water and sediment samples.
机译:溶出伏安法作为一种技术已被证明对重金属和其他金属离子的分析非常有用,因为它具有出色的检测限和在不同金属种类或干扰离子存在下的灵敏度。最近对水生样品的评估表明,由于汽车尾气排放和采矿活动,水生生态系统中的铂族金属(PGM)含量增加。由于对寻找具有合适识别元素的新型传感材料的需求不断增长,因此需要研究一种能够检测和表征PGM的分析传感器,该材料能够对环境样品中的特定金属离子进行选择性和可逆的响应。报告的工作表明,另一种无汞传感器电极已成功应用于测定环境样品中的铂族金属。这项研究报告的工作需要使用铋膜修饰的玻璃碳电极测定铂(Pt〜(2+)),钯(Pd〜(2+))或铑(Rh〜(2+ ))借助吸附阴极溶出伏安法。优化的实验条件包括支持电解质的组成,络合剂浓度,沉积电位,沉积时间和仪器伏安法参数,用于测定Pt〜(2 +),Pd〜(2+)和Rh〜(2+)。 PGM的吸附差分脉冲溶出伏安法测量是在二甲基乙二肟(DMG)作为络合剂的情况下进行的。在这项研究中使用的玻璃碳铋薄膜电极(GC / BiFE)表现出良好且可重现的传感器特性。 GC / BiFE传感器的应用在0至3.5μg/ L的浓度范围内对PGM的汽提分析显示出明确的峰和高度线性的行为。对于90 s(Pd)和150 s(对于Pt和Rh而言)的沉积时间,发现Pd,Pt和Rh的检出限分别为0.12μg/ L,0.04μg/ L和0.23μg/ L。还观察到良好的重现性,并通过分析环境水和沉积物样品证明了该传感器的实际适用性。

著录项

  • 来源
    《Journal of Environmental Science and Health》 |2012年第13期|p.2084-2093|共10页
  • 作者单位

    SensorLab, Department of Chemistry, University of the Western Cape, Bellville, South Africa,Natural Resources and the Environment (NRE), Council for Scientific and Industrial Research (CSIR), Stellenbosch, South Africa;

    SensorLab, Department of Chemistry, University of the Western Cape, Bellville, South Africa,Natural Resources and the Environment (NRE), Council for Scientific and Industrial Research (CSIR), Stellenbosch, South Africa;

    Natural Resources and the Environment (NRE), Council for Scientific and Industrial Research (CSIR), Stellenbosch, South Africa;

    Natural Resources and the Environment (NRE), Council for Scientific and Industrial Research (CSIR), Stellenbosch 7600, South Africa;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    platinum group metals; dimethylglyoxime; adsorptive differential pulse stripping voltammetry; surface water; sediment samples;

    机译:铂族金属;二甲基乙二肟;吸附差分脉冲溶出伏安法地表水;沉积物样本;
  • 入库时间 2022-08-17 13:36:01

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