Corrosion behavior about tubing steel in environment with high H2S and CO2 content

被引:15
|
作者
Li Wenfei [1 ]
Zhou Yanjun [1 ]
Xue Yan [2 ]
机构
[1] Shengli Petr Adm Bur, Drilling Technol Res Inst, Dongying 257017, Peoples R China
[2] Xian Maurer Petr Engn Lab, Xian 710065, Peoples R China
关键词
C100; steel; H2S; CO2; corrosion rate; stress corrosion cracking; STAINLESS-STEEL; SOUR; SULFIDE; SULFUR; IRON;
D O I
10.1007/s11595-013-0815-1
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The corrosion behavior of C100 steel in simulated environments with high H2S and CO2 content was studied through high-temperature and high-pressure autoclave, and the H2S stress corrosion cracking (SSC) resistance of C100 steel was evaluated by SSC tests. Scanning electron microscopy (SEM), transmission electron microscope (TEM) and X-ray diffraction (XRD) technique were employed to characterize the corrosion products and the metal matrix. The results indicate that all of the corrosion products in this investigation are mainly composed of different types of iron sulfide such as Fe0.95S, FeS0.9, Fe0.985S, Fe7S8 and FeS, and the absence of iron carbonate in the corrosion scales suggests that the corrosion process is governed by H2S corrosion. The corrosion rate decreases in the initial stage and then increases with the enhancement of the temperature. There exists a minimum corrosion rate at about 110 A degrees C. Under the partial pressure of H2S lower than 9 MPa, the corrosion rate decreases with the increase of While over 9 MPa, a higher will result in a faster corrosion process. When the applied stress is 72%, 80% and 85% of actual yield strength (AYS), all tested specimens show no crack, which reveals a superior SSC resistance.
引用
收藏
页码:1038 / 1043
页数:6
相关论文
共 50 条
  • [1] Corrosion Behavior about Tubing Steel in Environment with High H2S and CO2 Content
    李文飞
    ZHOU Yanjun
    XUE Yan
    Journal of Wuhan University of Technology(Materials Science), 2013, (05) : 1038 - 1043
  • [2] Corrosion behavior about tubing steel in environment with high H2S and CO2 content
    Wenfei Li
    Yanjun Zhou
    Yan Xue
    Journal of Wuhan University of Technology-Mater. Sci. Ed., 2013, 28 : 1038 - 1043
  • [3] The experiment research of corrosion behavior about tubing steel in environment with high H2S and CO2 content
    Li, Wenfei
    Li, Xuanye
    2013 INTERNATIONAL CONFERENCE ON MACHINERY, MATERIALS SCIENCE AND ENERGY ENGINEERING, 2013, 318 : 284 - 292
  • [4] Unraveling the Impact of Cr Content on the Corrosion of Tubing Steel in High CO2 and Low H2S Environments
    Zeng, Dezhi
    Luo, Jiancheng
    Zhang, Hanwen
    Zheng, Chunyan
    Chen, Xueke
    Zeng, Wenguang
    Chen, Hao
    Dong, Baojun
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2024,
  • [5] Corrosion behavior of low Cr steel in CO2/H2S environment
    Tian, Yong-Qiang
    Fu, An-Qing
    Hu, Jian-Guo
    Zheng, Xin
    Xu, Cong-Min
    Ren, Kang
    Lyu, Nai-Xin
    Li, Wen-Sheng
    Yin, Cheng-Xian
    Yuan, Jun-Tao
    Surface Technology, 2019, 48 (05): : 49 - 57
  • [6] Influence of H2S Content on CO2 Corrosion Behaviors of N80 Tubing Steel
    Jingen, D.
    Wei, Y.
    Xiaorong, L.
    Xiaoqin, D.
    PETROLEUM SCIENCE AND TECHNOLOGY, 2011, 29 (13) : 1387 - 1396
  • [7] Corrosion Behavior of 110S Tube Steel in Environments of High H2S and CO2 Content
    LI Wen-fei1
    2. Xi′an Maurer Petroleum Engineering Laboratory
    Journal of Iron and Steel Research(International), 2012, 19 (12) : 59 - 65
  • [8] Corrosion Behavior of 110S Tube Steel in Environments of High H2S and CO2 Content
    Li Wen-fei
    Zhou Yan-jun
    Xue Yan
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2012, 19 (12) : 59 - 65
  • [9] Corrosion Behavior of 110S Tube Steel in Environments of High H2S and CO2 Content
    Wen-fei Li
    Yan-jun Zhou
    Yan Xue
    Journal of Iron and Steel Research International, 2012, 19 : 59 - 65
  • [10] Electrochemical corrosion behavior of carbon steel under dynamic high pressure H2S/CO2 environment
    Zhang, G. A.
    Zeng, Y.
    Guo, X. P.
    Jiang, F.
    Shi, D. Y.
    Chen, Z. Y.
    CORROSION SCIENCE, 2012, 65 : 37 - 47