Corrosion behaviour of copper in wet bentonite Rokle B75
By: J. Stoulil, L. Horáčková and J. Říhová-Ambrožová

References
- 1. King, F., et al., Modelling long term corrosion behaviour of copper canisters in KBS-3 repository. Corrosion Engineering, Science and Technology 2011, 46 (2), 217-222.
- 2. Smith, J., et al., Sulfi de Film Formation on Copper Under Electrochemical and Natural Corrosion Conditions. Corrosion 2007, 63 (2), 135-144.
- 3. Arilahti, E., et al., Evidence for internal diffusion of sulphide from groundwater into grain boundaries ahead of crack tip in Cu OFP copper. Corrosion Engineering, Science and Technology 2011, 46 (2), 134-137.
- 4. Rosborg, B., et al., Corrosion rate of pure copper in an oxic bentonite/saline groundwater environment. Corrosion Engineering, Science and Technology 2011, 46 (2), 148-152.
- 5. Smart, N., et al., Further studies of in situ corrosion testing of miniature copper-cast iron nuclear waste canisters. Corrosion Engineering, Science and Technology 2011, 46 (2), 142-147.
- 6. Smith, J. M., et al., The Electrochemical Response of Preoxidized Copper in Aqueous Sulfi de Solutions. Journal of The Electrochemical Society 2007, 154 (8), C431.
- 7. Vuorinen, U., et al. Solubility database forTILA-99; POSIVA: 1998.
- 8. Chen, J., et al., Kinetics of Corrosion Film Growth on Copper in Neutral Chloride Solutions Containing Small Concentrations of Sulfi de. Journal of The Electrochemical Society 2010, 157 (10), C338.
- 9. Chen, J., et al., Rate controlling reactions for copper corrosion in anaerobic aqueous sulphide solutions. Corrosion Engineering, Science and Technology 2011, 46 (2), 138-141.
- 10. King, F., et al., Progress in the understanding of the longterm corrosion behaviour of copper canisters. Journal of Nuclear Materials 2013, 438 (1-3), 228-237.
- 11. Stoulil, J., et al., Infl uence of temperature on corrosion rate and porosity of corrosion products of carbon steel in anoxic bentonite environment. Journal of Nuclear Materials 2013, 443 (1-3), 20-25.
- 12. Dubus, M., et al., Monitoring copper and silver corrosion in different museum environments by electrical resistance measurement. Studies in Conservation 2010, 55 (2), 121-133.
- 13. Dubus, M.; Prosek, T., Standardized assessment of cultural heritage environments by electrical scientifi c paper resistance measurements. e-Preservation Science 2012, 9, 67-71.
- 14. Kouril, M., et al., Corrosion monitoring in archives by the electrical resistance technique. Journal of Cultural Heritage 2014, 15 (2), 99-103
- 15. Kouril, M., et al., High sensitivity electrical resistance sensors for indoor corrosion monitoring. Corrosion Engineering, Science and Technology 2013, 48 (4), 282-287.
- 16. Kouřil, M., et al., Corrosion monitoring in the hands of restorers and conservators. Koroze a ochrana materiálů 2012, 56 (3), 67-75.
- 17. Prosek, T., et al., Real time corrosion monitoring in atmosphere using automated battery driven corrosion loggers. Corrosion Engineering, Science and Technology 2008, 43 (2), 129-133.
- 18. Prosek, T., et al., Application of automated corrosion sensors for monitoring the rate of corrosion during accelerated corrosion tests. Materials and Corrosion 2014, 65 (5), 448-456.
Language: English, Czech
Page range: 43 - 47
Published on: Jul 10, 2014
Published by: Association of Czech and Slovak Corrosion Engineers
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
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© 2014 J. Stoulil, L. Horáčková, J. Říhová-Ambrožová, published by Association of Czech and Slovak Corrosion Engineers
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.