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Stripping voltammetry for the determination of trace metal speciation and in-situ measurements of trace metal distributions in marine waters

机译:溶出伏安法测定痕量金属形态并就地测量海水中痕量金属的分布

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摘要

Progress in marine chemistry has been driven by improved sampling and sample handling techniques, and developments in analytical chemistry. Consequently, during the last 20 years our understanding of marine trace metal biogeochemistry has improved a great deal. Stripping voltammetric techniques (anodic stripping voltammetry and adsorptive cathodic stripping voltammetry) have made an important contribution to this understanding. The selectivity and extremely low detection limits have made stripping voltammetry a widely used technique for trace metal speciation and trace metal distribution measurements in seawater. Stripping voltammetry is very suitable for ship-board and in-situ applications because of the portability, low cost and capability for automation of the voltammetric instrumentation. Future developments in stripping voltammetry can be expected in the field of stand-alone submersible voltammetric analysers, capable of continuous trace metal measurements. Future applications of stripping voltammetry can be found in the interactions between trace metal speciation and growth and the functioning of organisms in pristine and metal polluted marine waters. (C) 1999 Elsevier Science B.V. All rights reserved. [References: 115]
机译:改进的采样和样品处理技术以及分析化学的发展推动了海洋化学的进步。因此,在过去的20年中,我们对海洋痕量金属生物地球化学的认识有了很大的提高。溶出伏安技术(阳极溶出伏安法和吸附性阴极溶出伏安法)为这种理解做出了重要贡献。选择性和极低的检测限使溶出伏安法成为海水中痕量金属形态和痕量金属分布测量的广泛使用的技术。溶出伏安法非常适合船上和现场应用,因为它具有便携性,低成本和伏安法仪器自动化的能力。能够进行连续痕量金属测量的独立潜水式伏安分析仪领域有望在溶出伏安法领域取得进一步发展。溶出伏安法的未来应用可以在原始金属和金属污染的海水中微量金属形态与生长之间的相互作用以及生物体的功能中找到。 (C)1999 Elsevier Science B.V.保留所有权利。 [参考:115]

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