Crevice Corrosion Behavior of Stainless Steels in a Flue Gas Desulfurization Environment

被引:0
|
作者
Yong Hu
Hao Zhang
HuiYing Zhang
MingHui Ouyang
YongQi Hu
LiHua Wang
Cheng Chu
JingChao Wang
JingTang Wang
机构
[1] Lanzhou University of Technology,State Key Laboratory of Advanced Processing and Recycling of Non
[2] Lanzhou University of Technology,Ferrous Metals
[3] Wenzhou Pump and Valve Engineering Research Institute,School of Materials Science and Engineering
[4] Lanzhou University of Technology,Institute of Materials
[5] Shanghai University,Institute of Corrosion
[6] Xuanda Industrial Group Co.,Resistant Special Metal Materials of Xuanda Zhejiang Province
[7] Ltd.,undefined
来源
Journal of Materials Engineering and Performance | 2023年 / 32卷
关键词
crevice corrosion; flue gas desulfurization; passive film; stainless steel;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, cyclic potentiodynamic polarization, potentiodynamic–potentiostatic–potentiodynamic (PD–PS–PD) impedance, and semiconductor performance tests, combined with SEM/energy spectroscopy and XPS detection were used to systematically study the crevice corrosion behavior of SS904L, SS2205, SS2507, and SS254SMO stainless steels with synthetic crevice electrodes in simulated mixture solution of NaCl (10 g/L) and Na2SO4 (5.7 g/L) at 60 °C and pH = 3.5. The results showed that the corrosion behavior among the four stainless steels was most severe at the crevice mouth position, and the SS2507 formed passive films with better stability. Through the discussion of four stainless steels crevice corrosion mechanisms, the crevice geometry restricts the diffusion of metal ions and produces an autocatalytic effect to promote the development of crevice corrosion. Cr, Mo and N have a synergistic effect that improves resistance to crevice corrosion. The crevice corrosion resistance of the four stainless steels decreased in order of SS2507 > SS254SMO > SS904L > SS2205.
引用
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页码:10567 / 10581
页数:14
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