期刊文献+

Corrosion Behavior of 110S Tube Steel in Environments of High H_2S and CO_2 Content 被引量:24

Corrosion Behavior of 110S Tube Steel in Environments of High H_2S and CO_2 Content
原文传递
导出
摘要 The corrosion behavior of the 110S tube steel in the environments of high H2 S and CO2 content was inves- tigated by using a high-temperature and high-pressure autoclave, and the corrosion products were characterized by scanning electron microscopy and X ray diffraction technique. The results showed that all of the corrosion products under the test conditions mainly consisted of different types of iron sulfides such as pyrrhotite of Fe0.95 S, mackinaw- ite of FeS0.9, Fe0. 985 S and FeS, and the absence of iron carbonate in the corrosion scales indicated that the corrosion process was controlled by H2S corrosion. The corrosion rate of the 110S steel decreased firstly and then increased with the rising of temperature. The minimum corrosion rate occurred at 110 ℃. When the H2 S partial pressure PH2s below 9 MPa, the corrosion rate declined with the increase of PH2s. While over 9 MPa, a higher PH2s resulted in a faster corrosion process. With the increasing of the CO2 partial pressure, the corrosion rate had an increasing trend. The morphologies of the corrosion scales had a good accordance with the corrosion rates. The corrosion behavior of the 110S tube steel in the environments of high H2 S and CO2 content was inves- tigated by using a high-temperature and high-pressure autoclave, and the corrosion products were characterized by scanning electron microscopy and X ray diffraction technique. The results showed that all of the corrosion products under the test conditions mainly consisted of different types of iron sulfides such as pyrrhotite of Fe0.95 S, mackinaw- ite of FeS0.9, Fe0. 985 S and FeS, and the absence of iron carbonate in the corrosion scales indicated that the corrosion process was controlled by H2S corrosion. The corrosion rate of the 110S steel decreased firstly and then increased with the rising of temperature. The minimum corrosion rate occurred at 110 ℃. When the H2 S partial pressure PH2s below 9 MPa, the corrosion rate declined with the increase of PH2s. While over 9 MPa, a higher PH2s resulted in a faster corrosion process. With the increasing of the CO2 partial pressure, the corrosion rate had an increasing trend. The morphologies of the corrosion scales had a good accordance with the corrosion rates.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2012年第12期59-65,共7页 钢铁研究学报(英文版)
基金 Sponsored by Key National Science and Technology Specific Projects of China(2008ZX05017-002)
关键词 110S tube steel high H2S and Co2 content environment corrosion rate corrosion scale 110S tube steel high H2S and Co2 content environment corrosion rate corrosion scale
  • 相关文献

参考文献18

  • 1Shoesmith D W, Taylor P, Bailey M G, et al. Formation of Ferrous MonosulfJde Polymorphs During the Corrosion of Iron by Aqueous Hydrogen Sulfide at 21 "C [J]. Journal of the Electrochemical Society, 1980, 127(5): 1007.
  • 2Shoesmith D W, Rummery T E, Bailey M G, et al. Electro chemical Formation of Sulfur at Stainless Steel Surfaces [J]. Journal of the Electrochemical Society, 1980, 127(1): 27.
  • 3Kudo T, Tsuge H, Moroishi T. Stress Corrosion Cracking Re sistance of 22: Cr Duplex Stainless Steel in Simulated SourEnvironments [J] Corrosion, 1989, 45(10): 831.
  • 4Schmitt G. Effect of Elemental Sulfur on Corrosion in Sour Gas Systems [J] Corrosion, 1991, 47(4): 285.
  • 5AI-Hajji J N, Reda M R. Corrosion Behavior of Low Residual Carbon Steels in a Sour Environment [J]. Corrosion, 1993, 49 (5) : 363.
  • 6Ikeda A, Ueda M, Mukai S. CO2 Corrosion Behavior and Mechanism of Carbon Steel and Alloy Steel [C]//Remita E, Tribollet B, Sutter E, et al. Corrosion/1983. Houston.. Is.n.J, 1983.. 45.
  • 7Ma Houyi, Cheng Xiaoliang, Li Guiqiu, et al. The Influence of Hydrogen Sulfide on Corrosion of Iron Under Different Condi tions [J]. Corrosion Science, 2000, 42(10): 1669.
  • 8Ahelev E, Ramanarayanan T A, Bernasek S L. Iron Corrosion in COz/Brine at Low H2S Concentrations: An Electrochemical and Surface Science Study [J]. Journal of the Electrochemical Society, 2009, 156(9): C331.
  • 9Masamura K, Hashizume S, Sakai J, et al. Polarization Behav ior of High Alloy Octg in CO2 Environment as Affected by Chlorides and Sulfides [J]. Corrosion, 1987, 43(6): 359.
  • 10Pots B F M, Kapusta S D,'John R C. Improvements on De Waard Milliams Corrosion Prediction and Applications to Cor- rosion Management [C]//Scapin M, Sgorlon S, Tolomio M, et al. Corrosion/2002, Houston: Es.n.l, 2002: 235.

二级参考文献22

  • 1张清,李全安,文九巴,白真权.H_2S分压对油管钢CO_2/H_2S腐蚀的影响[J].腐蚀科学与防护技术,2004,16(6):395-397. 被引量:44
  • 2姜放,戴海黔,曹小燕,黄红兵.油套管在CO_2和H_2S共存时的腐蚀机理研究[J].石油与天然气化工,2005,34(3):213-215. 被引量:73
  • 3王献昉,董振江,梁拥军,张忠铧,陈长风.经济型低Cr抗CO_2腐蚀合金石油管材钢开发现状[J].腐蚀科学与防护技术,2006,18(6):436-439. 被引量:42
  • 4Srinivasan S, Kane B D. Experimental simulation of multiphase CO2/H2S systems//NACE Corrosion / 1999. Houston, 1999 : 14
  • 5Pots B F M, John R C, Rippon I J, et al. Improvement on De Waard-Milliams corrosion prediction and application to corrosion management // NACE Corrosion/2002. Houston, 2002:02235
  • 6Rhodes P R. Environment-assisted cracking of corrosion-resistant alloys in oil and gas production environments: a review. Corrosion, 2001, 57(11): 923
  • 7Wikjord A G., Rummery T E, Doem F E, et al. Corrosion and deposition during the exposure of carbon steel to hydrogen sulphide-water solutions. Corros Sci, 1980, 20:651
  • 8Meyer F H, Riggs O L, McGlasson R L, et al. Corrosion products of mild steel in hydrogen sulfide environments. Corrosion, 1958, 14(2): 109
  • 9Sardisco J B, Pitts R E. Corrosion of iron in an H2S-CO2-H2O system mechanism of sulfide film formation and kinetics of corrosion reaction. Corrosion, 1965, 21(8): 245
  • 10KERMANI M B,GONZALES J C,TURCONI G L,et al.Materials optimisation in hydrocarbon production[A].60st NACE Annual Conference[C].Houston; Omnipress,2005.

共引文献59

同被引文献254

引证文献24

二级引证文献139

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部