Prediction of short- and long-term atmospheric corrosion in the changing low pollution climate for inland and coastal areas

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Abstract

This paper studies the impact of the changing climate on atmospheric corrosion loss in the future low pollution environment. Two climate change scenarios (SSP1- 2.6 and SSP5-8.5) are studied and they reveal a warmer environment with decreasing sulphur dioxide contamination and slightly changed relative humidity and precipitation from 2010 to 2100. As a consequence, environment corrosivity is both enhanced by increased time-of-wetness and weakened by decreased sulphur dioxide deposition rate. To consider the low pollution environment in the future changing climate, a relative error minimized short-term corrosion model and a re-scaled power-linear long-term corrosion model are proposed. Corrosion loss evaluation results show that, on the overall scale which is mainly representative of remote rural areas, first-year corrosion loss C of different metals under the two SSPs has different trends. On the regional scale of urban and marine areas with high SO2 or Cl− levels, C will decrease continuously under both SSPs for all three metals. The long-term corrosion loss will also decrease as the environment continues to be less and less corrosive.

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Cai, Y., Zhao, Y., Chen, Q., Ma, X., Hao, S., & Zhou, K. (2025). Prediction of short- and long-term atmospheric corrosion in the changing low pollution climate for inland and coastal areas. Corrosion Reviews, 43(5), 549–568. https://doi.org/10.1515/corrrev-2024-0056

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