Metallic corrosion in the polluted urban atmosphere of Hong Kong

Author:

Liu Bo,Wang Da-Wei,Guo Hai,Ling Zhen-Hao,Cheung Kalam

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,Pollution,General Environmental Science,General Medicine

Reference25 articles.

1. Aastrup, T., Wadsak, M., Leygraf, C., & Schreiner, M. (2000). In situ studies of the initial atmospheric corrosion of copper: influence of humidity, sulfur dioxide, ozone, and nitrogen dioxide. Journal of the Electrochemical Society, 147(7), 2543–2552.

2. Baer, N. S., Bermabo, J. C., Lipfert, F. W., & Smythe, K. D. (1987). Effects of acidic deposition on materials degradation. A Synthesis Report, EPRI-EA-5424. Palo Alto: Electric Power Research Institute.

3. Castaño, J. G., Botero, C. A., Restrepo, A. H., Agudelo, E. A., Correa, E., & Echeverría, F. (2010). Atmospheric corrosion of carbon steel in Colombia. Corrosion Science, 52(1), 216–223.

4. Cohen, B. S., Heikkinen, M. S., Hazi, Y., Guo, H., Peters, P., & Lippmann, M. (2004). Field evaluation of nanofilm detectors for measuring acidic particles in indoor and outdoor air. Research Report. Health Effects Institute, 121, 1–35. discussion 37–46.

5. Gan, F. X., Guo, H., & Yao, L. A. (1991). The mechanism of arsenic in inhibiting dezincification of brass. Journal Chinese Society for Corros and Protection, 11(1), 75–82.

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