Citation: | TANG Xian, ZHANG Lei, WANG Zhu, ZHANG Zi-ru, XUE Jun-peng, LU Min-xu. Effect of SO42- on the passive and pitting behavior of 316L austenite stainless steel in a Cl--containing solution[J]. Chinese Journal of Engineering, 2018, 40(3): 366-372. doi: 10.13374/j.issn2095-9389.2018.03.013 |
[2] |
Wang Q Y, Wang X Z, Luo H, et al. A study on corrosion behaviors of Ni-Cr-Mo laser coating, 316 stainless steel and X70 steel in simulated solutions with H2S and CO2. Surf Coat Technol, 2016, 291:250
|
[3] |
Hu X M, Neville A. CO2 erosion-corrosion of pipeline steel (API X65) in oil and gas conditions——a systematic approach. Wear, 2009, 267(11):2027
|
[6] |
Al-Sulaiman S, Al-Shamari A, Al-Mithin A, et al. Assessing the possibility of hydrogen damage in crude oil processing equipment//NACE Corrosion 2010. San Antonio, 2010:10176
|
[8] |
He W, Knudsen O Ø, Diplas S. Corrosion of stainless steel 316L in simulated formation water environment with CO2-H2S-Cl-. Corros Sci, 2009, 51(12):2811
|
[10] |
El Sherbini E E F, El Rehim S S A. Pitting corrosion of zinc in Na2SO4, solutions and the effect of some inorganic inhibitors. Corros Sci, 2000, 42(5):785
|
[11] |
Böhni H, Uhlig H H. Environmental factors affecting the critical pitting potential of aluminum. J Electrochem Soc, 1969, 116(7):906
|
[12] |
Pyun S I, Park J J. Fractal analysis of pit morphology of Inconel alloy 600 in sulphate, nitrate and bicarbonate ion-containing sodium chloride solution at temperatures of 25-100℃. J Solid State Electrochem, 2004, 8(5):296
|
[13] |
Pyun S I, Na K H, Lee W J, et al. Effects of sulfate and nitrate ion additives on pit growth of pure aluminum in 0.1 M sodium chloride solution. Corrosion, 2000, 56(10):1015
|
[16] |
Niu L B, Nakada K. Effect of chloride and sulfate ions in simulated boiler water on pitting corrosion behavior of 13Cr steel. Corros Sci, 2015, 96:171
|
[18] |
Sánchez M, Gregori J, Alonso C, et al. Electrochemical impedance spectroscopy for studying passive layers on steel rebars immersed in alkaline solutions simulating concrete pores. Electrochim Acta, 2007, 52(27):7634
|
[19] |
Freire L, Carmezim M J, Ferreira M G S, et al. The passive behavior of AISI 316 in alkaline media and the effect of pH:a combined electrochemical and analytical study. Electrochim Acta, 2010, 55(21):6174
|
[21] |
Frankel G S. Errata:"Pitting corrosion of metals. A review of the critical factors". J Electrochem Soc, 1998, 145(8):2970
|
[22] |
Soltis J. Passivity breakdown, pit initiation and propagation of pits in metallic materials——review. Corros Sci, 2015, 90:5
|