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Dimensionally Stable Anodes DSA for Oxygen

Several industrial processes require long-lasting anodes for evolving oxygen in an acidic medium. In comparison with the chlorine-evolution reaction, the evolution of oxygen leads [Pg.581]

Nidola, A. In Trasatti, S. (ed.) (1981) Electrodes of Conductive Metallic Oxides. Part B. Elsevier, Amsterdam, Chap. 11, pp. 627-659. [Pg.581]

Vercesi, G.P. Rolewicz, J. Comninellis, C. Hinden, J. (1991) Characterization of dimensionally stable anodes DSA-type oxygen evolving electrodes. Choice of base metal. Thermochimica Acta, 176,31-47. Comninellis, Ch. Vercesi, G.P. (1991) Characterization of DSA-type oxygen evolving electrodes choice of a coating. /. Appl. Electrochem., 21(4), 335-345. [Pg.581]

(1980) The invention and industrial development of metal anodes. /. Electrochem. Soc., 127, 303C-307C. [Pg.581]

These data show clearly that of the candidate electrocatalysts, Ir, Ru, Os, Ni, and Co have lower redox potentials than Rh, Pd, and Pt. Despite its excellent electrocatalytic activity, ruthenium dioxide (RuO ) is readily oxidized at 1.39V/SHE to give off the volatile ruthenium [Pg.582]


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