Article ID Journal Published Year Pages File Type
1165098 Analytica Chimica Acta 2013 9 Pages PDF
Abstract

Silver amalgamated electrodes are a good substrate to determine lead (Pb) and cadmium (Cd) in seawater because they have properties similar to mercury but without the free mercury (Hg). Here a silver amalgamated microwire (SAM) electrode is optimised for the determination of Pb and Cd in coastal waters and uncontaminated ocean waters. The SAM was vibrated during the deposition step to increase the sensitivity, and electroanalytical parameters were optimised. The Hg coating required plating from a relatively concentrated (millimolar) solution, much greater (500×) than used for instance to coat glassy carbon electrodes. However, the coating on the ex situ amalgamated electrode was found to be stable and could be used for up to a week to determine trace levels of Pb in seawater of natural pH. The limit of detection square-wave ASV (50 Hz) using the pre-plated SAM electrode was 8 pM Pb using a 1-min plating time at pH 4.5. The limit of detection in pH 2 seawater was 4 pM using a 5-min plating time, and it was 12 pM using a 10-min plating time at natural pH in the presence of air, using a square-wave frequency of 700 Hz. The vibrating SAM electrode was tested on the determination of Pb in reference seawater samples from the open Atlantic (at the 20 pM level), Pacific, and used for a study of Pb in samples collected over 24 h in Liverpool Bay (Irish Sea).

Graphical abstractFigure optionsDownload full-size imageDownload as PowerPoint slideHighlights► A vibrating silver amalgam microwire (SAM) is used as electrode in voltammetry. ► The SAM has sufficient sensitivity to determine Pb in uncontaminated seawater. ► The SAM is vibrated during the deposition step to increase the sensitivity. ► The new electrode and method are more sensitive than pre-existing electrodes. ► The limit of detection is 4 pM Pb and 100 pM Cd in acidified seawater.

Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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