Development of redox determination methods


Development of redox determination methods

Steinbrück, D.; Kumke, M.; Neck, V.; Fellhauer, D.; Runke, J.; Grambow, B.; Landesman, C.; Ribert, S.; Krawczyk-Bärsch, E.; Perdicakis, M.

To compare the applicability of an electrochemical and a laser-based fiber-optical microsensor for oxygen determination in biofilm samples, microprofiling measurements in uranium free biofilms and in biofilms exposed to ecologically relevant uranium concentration were performed. For our studies we used a commercial available Clark-type microelectrode and a custom fiber-optic instrument, which was optimized for tip probes < 10 µm (optodes) by use of a diode laser and the so-called two frequency phase modulation technique, to mask interfering background fluorescence.
The data obtained from both microsensor methods in uranium free and uranium contaminated biofilms were in good agreement. Fiber-optic and electrochemical microsensor measurements showed high concentrations of oxygen over the total thickness of the uranium free biofilms. In contrast, biofilms exposed to uranium revealed a much lower oxygen concentration in the upper layers of the biofilm. At a biofilm depth of approximately 750 µm no oxygen was detectable at all.

Keywords: Electrochemical microsensor; fiber-optic sensor; biofilms; uranium

  • Contribution to proceedings
    2nd Annual Workshop Proceedings of the Collaborative Project "Redox Phenomena Controlling Systems" (7th EC FP CP RECOSY) Kit Scientific Reports 7557, 11-26, 2010, 16.-19.03.2010, Larnaca, Cyprus, KIT Scientific Publishing, Karlsruhe

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