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Corrosion behaviour of steel CSN 422707.9 in concentrated synthetic bentonite pore water Cover

Corrosion behaviour of steel CSN 422707.9 in concentrated synthetic bentonite pore water

Open Access
|Sep 2016

References

  1. 1. Smart, N. R. Anaerobic Corrosion of Carbon Steel and Cast Iron in Artifi cial Groundwaters: Part 1 - Electrochemical Aspects. Corrosion 2002, 58 (7), 547-559.10.5006/1.3277646
  2. 2. Beverskog, B. Revised pourbaix diagrams for iron at 25-300 °C. Corros. Sci. 1996, 38 (12), 2121-2135.
  3. 3. Linnenbom, V. J. The Reaction between lron and Water in the Absence of Oxygen. J. Electrochem. Soc. 1958, 105 (6), 322-324.
  4. 4. Refait, Ph. The anionic species competition in iron aqueous corrosion: Role of various green rust compounds. Corros. Sci. 1997, 39 (9), 1699-1710.
  5. 5. Guilbaud, R. Surface charge and growth of sulphate and carbonate green rust in aqueous media. Geochim. Cosmochim. Acta 2013, 108, 141-153.10.1016/j.gca.2013.01.017
  6. 6. Refait, Ph. The oxidation of ferrous hydroxide in chloridecontaining aqueous media and pourbaix diagrams of green rust one. Corros. Sci. 1993, 34 (5), 797-819.
  7. 7. Ishikawa, T. Formation of magnetite in the presence of ferric oxyhydroxides. Corros. Sci. 1998, 40 (7), 1239-1251.
  8. 8. Tamaura, Y. Transformation of γ-FeO(OH) to Fe3O4 by adsorption of iron(II) ion on γFeO(OH). J. Chem. Soc. 1983, 189-194.10.1039/DT9830000189
  9. 9. Lee, C. T. The infl uence of groundwater anions on the impedance behaviour of carbon steel corroding under anoxic conditions. Electrochim. Acta 2006, 51 (8-9), 1558-1568.10.1016/j.electacta.2005.02.115
  10. 10. Carlson, L. Experimental studies of the interactions between anaerobically corroding iron and bentonite. Physics and Chemistry of the Earth 2007, 32 (1-7), 334-345.10.1016/j.pce.2005.12.009
  11. 11. Martin, F. A. Corrosion of iron and low alloyed steel within a water saturated brick of clay under anaerobic deep geological disposal conditions: An integrated experiment. J. Nucl. Mater. 2008, 379 (1-3), 80-90.
  12. 12. Schlegel, M. L. Metal corrosion and argillite transformation at the water-saturated, high-temperature iron-clay interface: A microscopic-scale study. Appl. Geochem.2008, 23 (9), 2619-2633.
  13. 13. Refait, Ph. Electrochemical formation of carbonated corrosion products on carbon steel in deaerated solutions. Electrochim. Acta 2012, 79 (30), 210-217.10.1016/j.electacta.2012.06.108
  14. 14. Legrand, L. Study of oxidation products formed on iron in solutions containing bicarbonate/carbonate. Electrochim. Acta 2000, 46 (1), 111-117.10.1016/S0013-4686(00)00563-6
  15. 15. Legrand, L. Electroanalytical and Kinetic Investigations on the Carbonate Green Rust-Fe(III) Redox System. J. Electrochem. Soc. 2003, 150 (2), B45-B51.
  16. 16. Pitter, P. Hydrochemie, 5th ed.; VŠCHT: Praha, 2015.
  17. 17. Han, J. A coupled electrochemical-geochemical model of corrosion for mild steel in high-pressure CO2-saline environments. International Journal of Greenhouse Gas Control 2011, 5 (4), 777-787.10.1016/j.ijggc.2011.02.005
  18. 18. Stoulil, J. Infl uence of temperature on corrosion rate and porosity of corrosion products of carbon steel in anoxic bentonite environment. J. Nucl. Mater. 2013, 443 (1-3), 20-25.
  19. 19. Andrade, C., Gonzales, J. A. Quantitative measurements of corrosion rate of reinforcing steels embedded in concrete using polarization resistance measurements, Werkstoffe und Korrosion 1978, 29, 515-519.10.1002/maco.19780290804
DOI: https://doi.org/10.1515/kom-2016-0011 | Journal eISSN: 1804-1213 | Journal ISSN: 0452-599X
Language: English
Page range: 68 - 73
Published on: Sep 20, 2016
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 D. Novikova, M. Kouřil, Š. Msallamová, J. Stoulil, N. Strnadová, published by Association of Czech and Slovak Corrosion Engineers
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.