Citation: | YU Ming-fei, XIANG Song, MA Guo-qiang, SHI Wei, YU Wen, JI Xuan-ming. Effects of fluoride ions on corrosion resistance of stainless steel in high-temperature concentrated sulfuric acid[J]. Chinese Journal of Engineering, 2017, 39(6): 882-888. doi: 10.13374/j.issn2095-9389.2017.06.010 |
[1] |
Li Y X, Ives M B, Coley K S. Corrosion potential oscillation of stainless steel in concentrated sulphuric acid:I. Electrochemical aspects. Corros Sci, 2006, 48(6):1560
|
[2] |
Meng G Z, Li Y, Shao Y W, et al. Effect of Cl-on the properties of the passive films formed on 316L stainless steel in acidic solution. J Mater Sci Technol, 2014, 30(3):253
|
[3] |
Lee J B, Yoon S I. Effect of nitrogen alloying on the semiconducting properties of passive films and metastable pitting susceptibility of 316L and 316LN stainless steels. Mater Chem Phys, 2010, 122(1):194
|
[4] |
Alamr A, Bahr D F, Jacroux M. Effects of alloy and solution chemistry on the fracture of passive films on austenitic stainless steel. Corros Sci, 2006, 48(4):925
|
[5] |
Tschuncky P, Heinze J. An improved method for the construction of ultramicroelectrodes. Anal Chem, 1995, 67(21):4020
|
[6] |
Chen G, Shi Z N, Yu J Y, et al. Anodic passivation of a graphite electrode in LiF-KF melt at 773 K. J Electrochem Soc, 2015, 162(4):C197
|
[9] |
Richardson J A. Shreir's Corrosion. 4th Ed. Country Oxford, United Kingdom:Elsevier Science&Technology, 2009
|
[10] |
Li Y X, Ives M B, Coley K S, et al. Corrosion of nickel-containing stainless steel in concentrated sulphuric acid. Corros Sci, 2004, 46(8):1969
|
[11] |
Cao C N. On the impedance plane displays for irreversible electrode reactions based on the stability conditions of the steadystate-I. One state variable besides electrode potential. Electrochim Acta, 1990, 35(5):831
|