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            Assessment of an ultramicroelectrode array (UMEA) sensor for the determination of trace concentrations of heavy metals in water [online]

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            https://www.ksp.kit.edu/3937300481
            Author(s)
            Xie, Xudong
            Language
            English
            Show full item record
            Abstract
            The main objectives of this book are (i) to investigate the electrochemical behavior and the analytical performance of a novel ultramicroelectrode array (UMEA); (ii) to assess the analytical parameters of square-wave anodic stripping voltammetric measurements (SWASV) using the UMEA; and (iii) to estimate the potential of the UMEA in developing decentralised analytical equipments for the determination of trace concentrations of heavy metals in natural waters. Surface analytical techniques (SEM, ESEM, and AFM) showed that the UMEA chips are of high quality in manufacture. Cyclic voltammetric and chronoamperometric experiments proved that the electrochemical behavior of the UMEA is dominated by the features characteristic for single microelectrodes.Chronocoulometry was found to be the most suitable method in generating the Hg-film of good quality. A new UMEA chip could be plated at least ten times, corresponding to about 500 measurements of trace metals in synthetic aqueous solutions. Using SWASV, detection limits of <0.1 ï¿g/l could be achieved for the metals (Pb, Cd). Precision and accuracy were found to be approx +/-10% of RSD.In natural waters, the results obtained with the UMEA sensor showed a reasonably good agreement with HR-ICP-MS analyses. Different experimental parameters were optimised and investigated. Interferences (e.g., DOC) were significantly reduced through medium exchange and standard addition. Ultrasonic bath proved to be very efficient in resurfacing electrodes in laboratory.The UMEA sensor shows a great potential in developing a portable trace metal analyzer. However, for in situ and on-site measurements, the protection of the UMEA sensor from fouling seems to be inevitable. In order to achieve a pure microelectrode behavior with the UMEA, increasing the ratio of interelectrode distance to electrode diameter is recommended for further developments.
            URI
            https://directory.doabooks.org/handle/20.500.12854/41448
            Keywords
            Schwermetall; Geochemie; Chemischer Sensor; Elektrochemischer Sensor; Mikroelektrode; Sensor
            DOI
            10.5445/KSP/1362004
            ISBN
            3937300481
            Publisher
            KIT Scientific Publishing
            Publisher website
            http://www.ksp.kit.edu/
            Publication date and place
            2004
            Series
            Karlsruher Mineralogische und Geochemische Hefte,
            Classification
            Physics
            Pages
            X, 133 p.
            Review type
            Full text
            Anonymity
            All identities known
            Reviewer type
            Editorial board member; External peer reviewer
            Review stage
            Pre-publication
            Open review
            No
            Publish responsibility
            Books or series editor
            • Imported or submitted locally

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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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