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Article

Atmospheric Corrosion Behavior of Q235 Steel Exposed to the Subtropical Marine Environment in the East China Sea for Two Years

1
School of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao 266042, China
2
State Key Laboratory of Advanced Marine Materials, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China
3
Southwest Institute of Technology and Engineering, Chongqing 400039, China
4
Qingdao Marine Science and Technology Center, Qingdao 266237, China
*
Authors to whom correspondence should be addressed.
Materials 2026, 19(6), 1189; https://doi.org/10.3390/ma19061189
Submission received: 5 February 2026 / Revised: 13 March 2026 / Accepted: 15 March 2026 / Published: 18 March 2026
(This article belongs to the Special Issue Corrosion and Mechanical Behavior of Metal Materials (3rd Edition))

Abstract

The corrosion behavior and mechanism of Q235 steel during a two-year exposure to the subtropical marine atmospheric environment on an offshore platform in the East China Sea were investigated in this study. Methods including corrosion weight loss measurement, macro/micro-morphological observation (using a digital camera, SEM, and 3D-CLSM), composition analysis (XRD and XPS), and electrochemical tests (EIS and Tafel polarization curves) were employed to systematically examine corrosion kinetics, rust layer evolution, and electrochemical performance. The results indicated that the corrosion rate of Q235 steel initially increased and subsequently decreased with prolonged exposure, with the atmospheric corrosivity reaching CX level as defined (according to the ISO 9223 standard). The corrosion products transitioned from an early-stage rust layer predominantly consisting of γ-FeOOH to a later-stage layer primarily composed of α-FeOOH and Fe3O4. XPS analyses revealed that both the α*/γ* ratio and the Fe(II)/Fe(III) ratio increased over time, demonstrating a progressive improvement in the protective properties of the rust layer. The polarization resistance of the rust layer gradually rose, while the corrosion current density declined significantly, further confirming the enhanced stability and protective performance of the rust layer following long-term exposure. Chloride ions accumulated at defects within the rust layer, inducing local acidification, which played a key role in promoting the initiation and propagation of pitting corrosion. This study elucidated the corrosion behavior and mechanism of Q235 steel in the marine atmospheric environment of the East China Sea. Despite the increase in exposure time from 6 to 24 months, during which the electrochemical stability of the rust layer enhanced over time, it failed to prevent the initiation and propagation of severe localized corrosion—an issue of critical importance for load-bearing structures. The findings provide important theoretical and data support for service-life assessment and corrosion protection design of offshore photovoltaic steel structures.
Keywords: subtropical marine atmosphere; carbon steel; atmospheric corrosion; corrosion behavior subtropical marine atmosphere; carbon steel; atmospheric corrosion; corrosion behavior

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MDPI and ACS Style

Chen, T.; Yang, L.; Liu, C.; Zhang, T.; Chen, S.; Deng, X.; Sun, L. Atmospheric Corrosion Behavior of Q235 Steel Exposed to the Subtropical Marine Environment in the East China Sea for Two Years. Materials 2026, 19, 1189. https://doi.org/10.3390/ma19061189

AMA Style

Chen T, Yang L, Liu C, Zhang T, Chen S, Deng X, Sun L. Atmospheric Corrosion Behavior of Q235 Steel Exposed to the Subtropical Marine Environment in the East China Sea for Two Years. Materials. 2026; 19(6):1189. https://doi.org/10.3390/ma19061189

Chicago/Turabian Style

Chen, Tianxing, Lihui Yang, Cong Liu, Tianlong Zhang, Shibo Chen, Xiaoyan Deng, and Liang Sun. 2026. "Atmospheric Corrosion Behavior of Q235 Steel Exposed to the Subtropical Marine Environment in the East China Sea for Two Years" Materials 19, no. 6: 1189. https://doi.org/10.3390/ma19061189

APA Style

Chen, T., Yang, L., Liu, C., Zhang, T., Chen, S., Deng, X., & Sun, L. (2026). Atmospheric Corrosion Behavior of Q235 Steel Exposed to the Subtropical Marine Environment in the East China Sea for Two Years. Materials, 19(6), 1189. https://doi.org/10.3390/ma19061189

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