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Corrosion Engineering, Science and Technology
The International Journal of Corrosion Processes and Corrosion Control
Volume 52, 2017 - Issue 1
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Original Articles

Effects of alternating current interference on cathodic protection potential and its effectiveness for corrosion protection of pipelines

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Pages 22-28 | Received 30 Mar 2016, Accepted 04 Apr 2016, Published online: 21 May 2016

References

  • A. Fu and Y. Cheng: ‘Effects of alternating current on corrosion of a coated pipeline steel in a chloride-containing carbonate/bicarbonate solution’, Corros. Sci., 2010, 52, 612–619.
  • D. Kuang and Y. F. Cheng: ‘Understand the AC induced pitting corrosion on pipelines in both high pH and neutral pH carbonate/bicarbonate solutions’, Corros. Sci., 2014, 85, 304–310.
  • A. Pourbaix: ‘Detection and assessment of alternating current corrosion’, Mater. Perf., 2000, 39, 34–37.
  • M. Yunovich and N. G. Thompson: ‘AC corrosion: corrosion rate and mitigation requirements’, Corrosion'2004, New Orleans, CA, 2004, NACE, paper no. 04206.
  • L. V. Nielsen: ‘Role of alkalization in AC induced corrosion of pipelines and consequences hereof in relation to CP requirements’, Corrosion'2005, Houston, TX, 2005, NACE, paper no. 05188.
  • H. Xiao and S. B. Lalvani: ‘A linear model of alternating voltage-induced corrosion’, J. Electrochem. Soc., 2008, 155, 69–74.
  • D. Kuang and Y. F. Cheng: ‘AC corrosion at coating defect on pipelines’, Corrosion, 2015, 71, 267–276.
  • D. Kuang and Y. Cheng: ‘Effect of alternating current interference on coating disbondment and cathodic protection shielding on pipelines’, Corros. Eng. Sci. Technol., 2015, 50, 211–217.
  • S. Goidanich, L. Lazzari and M. Ormellese: ‘AC corrosion-Part 1: effects on overpotentials of anodic and cathodic processes’, Corros. Sci., 2010, 52, 491–497.
  • S. Goidanich, L. Lazzari and M. Ormellese: ‘AC corrosion-Part 2: parameters influencing corrosion rate’, Corros. Sci., 2010, 52, 916–922.
  • X. He, G. Jiang, Y. Qiu, G. Zhang, X. Jin, Z. Xiang, Z. Zhang and H. Tang: ‘Study of criterion for assuring the effectiveness of cathodic protection of buried steel pipeleines being interfered with alternative current’, Mater. Corros., 2012, 63, 534–543.
  • A. Brenna, L. Lazzari, M. Pedeferri and M. Ormellese: ‘Cathodic protection cognition in the presence of AC interference’, La Metallurgia Italiana, 2014, 6, 29–34.
  • British Standards BS EN 15280: ‘Evaluation of a.c. corrosion likelihood of buried pipelines applicable to cathodically protected pipelines’, September 2013.
  • A. Q. Fu and Y. F. Cheng: ‘Effect of alternating current on corrosion and effectiveness of cathodic protection of pipelines’, Can. Metall. Q., 2012, 51, 81–90.
  • D. Z. Tang, Y. X. Du, M. X. Lu, Z. T. Jiang, L. Dong and J. J. Wang: ‘Effect of AC current on corrosion behavior of cathodically protected Q235 steel’, Mater. Corros., 2015, 66, 278–285.
  • L. V. Nielsen and F. Galsgaard: ‘Sensor technology for on-line monitoring of AC induced corrosion along pipelines’, Corrosion'2005, Houston, TX, 2005, NACE, paper no. 05375.
  • N. Kioupis, N. Kouloumbi and G. Batis: ‘Simulation of cathodically protected pipeline with capacitive AC mitigation devices for interpretation of misleading instant Eoff readings’, Corros. Eng. Sci. Technol., 2013, 48, 166–172.
  • M. Ormellese, L. Lazzari and A. Brennea: ‘AC corrosion of cathodically protected buried pipelines: critical interference values and protection criteria’, Corrosion'2015, Dallas, TX, 2015, paper no. 2015–5753.
  • D. Tang, M. Lu, Y. Du, Z. Jiang and L. Dong: ‘Study on CP criteria for mild steel in the presence of AC’, Corrosion'2014, San Antonio, TX, 2014, NACE, paper no. 3802.
  • Y. Hosokawa, F. Kajiyama and Y. Nakamura: ‘New CP criteria for elimination of the risks of AC corrosion and overprotection on cathodically protected pipelines’, Corrosion'2002, Denver, CO, 2002, NACE, paper no. 02111.
  • M. Ormellese, S. Goidanich and L. Lazzari: ‘Effect of AC interference on cathodic protection monitoring’, Corros. Engi., Sci. Technol., 2011, 46, 618–623.
  • L. Y. Xu and Y. F. Cheng: ‘Effect of alternating current on cathodic protection on pipelines’, Corros. Sci., 2013, 66, 263–268.
  • A. Brenna, M. V. Diamanti, L. Lazzari and M. Ormellese: ‘A proposal of AC corrosion mechanism in cathodic protection’, Tech. Proc. of NSTI Nanotechnology Conference and Expo, NANOTECH 2011.
  • Y. Frank Cheng: ‘Stress corrosion cracking of pipelines’, 2013, Hoboken, NJ, John Wiley Publishing.
  • L. Y. Xu, X. Su, Z. X. Yin, Y. H. Tang and Y. F. Cheng: ‘Development of a real-time AC/DC data acquisition technique for studies of AC corrosion of pipelines’, Corros. Sci., 2012, 61, 215–223.
  • ASTM G 1-03: ‘Standard practice for preparing, cleaning, and evaluating corrosion test specimens’, 1–9; 2003, West Conshohocken, PA, ASTM International.
  • J. R. Davis: ‘Corrosion – understanding the basics’, 2000, Materials Park, OH, ASM International.

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