4.6 Article

Atmospheric-Corrosion Electrochemistry of NaCl Droplets on Carbon Steel

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JOURNAL OF THE ELECTROCHEMICAL SOCIETY
卷 159, 期 11, 页码 C461-C468

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ELECTROCHEMICAL SOC INC
DOI: 10.1149/2.035211jes

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  1. Pacific Rim Environmental Degradation of Material Research Program under the US Army [W15QKN-07-C-0002]

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To understand the mechanism of marine atmospheric corrosion on steel, the electrochemistry of NaCl droplets formed by the deliquescence of pre-deposited NaCl particles upon exposure to high humidity on carbon steel surfaces was explored. The concentrations of the newly deliquesced NaCl droplets were near saturation. The pH of the droplets was in the range of 8-9 during the first several minutes in the humidity chamber. The open-circuit potential (OCP) of the steel was in the range of -0.10-0.0 V-SCE for small droplets (i.e., D < similar to 100 mu m) and -0.50-0.30 VSCE for larger droplets (i.e., D > similar to 100 mu m). Anodic polarization showed that the steel passivated under the small droplets and corroded actively under the larger droplets. Cathodic polarization indicated oxygen reduction as the primary cathodic reaction under NaCl droplets of different sizes. The diffusion-limited oxygen reduction current density increased as the droplet size decreased and was inversely proportional to the droplet diameter in the range of 103-426 mu m. (C) 2012 The Electrochemical Society. [DOI: 10.1149/2.035211jes] All rights reserved.

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