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Passivation Behavior of Super Austenitic Stainless Steels in Simulated Flue Gas Desulfurization Condensate |
HE Zhihao1,2, JIA Jianwen1,2, LI Yang3, ZHANG Wei3, XU Fanghong3, HOU Lifeng1,2( ), WEI Yinghui1,2 |
1.College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China 2.Shanxi Engineering Research Center for Corrosion & Protection, Taiyuan 030024, China 3.State Key Laboratory of Advanced Stainless Steel, Taiyuan Iron and Steel (Group) Co. Ltd., Taiyuan 030003, China |
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Abstract The passivation behavior of austenitic stainless steels 254SMo, 904L and 316L in a simulated flue gas desulfurization condensate was studied by potentiodynamic polarization, potentiostatic polarization, Mott-Schottky and XPS methods. The results show that, with the increase of Mo content, the passive region becomes larger, the pitting potential becomes more positive, and the passivation current density decreases for the steels. Among others, 254SMo steel exhibits the best corrosion resistance, which means that 254SMo steel is more suitable to be used in flue gas desulfurization environment. At the same time, with the increase of pH value of the simulated solution, the flat-band potential of the three steels all shifts negatively, and the value of the donor density would be decreased for their passivation film, indicating that the defects of the passivation film decreased, and the corrosion resistance would be increased.
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Received: 12 April 2022
32134.14.1005.4537.2022.107
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Fund: Central Government Guided Local Special Funds(YDZX20191400002094);Key Scientific Research Project in Shanxi Province(20191102006) |
About author: HOU Lifeng, E-mail: houlifeng@126.com
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