Uneingeschränkter Zugang

Monitoring of corrosive environment aggressiveness and development of a sensor for monitoring of the water film in exposure chamber


Zitieren

1. Kreislova, K.; Geiplova, H., Prediction of the long-term corrosion rate of copper alloy objects. Mater Corros2016,67 (2), 152-159.10.1002/maco.201408112Search in Google Scholar

2. De la Fuente, D., et al., Morphological study of 16-year patinas formed on copper in a wide range of atmospheric exposures. Corrosion Science2008,50 (1), 268-285.10.1016/j.corsci.2007.05.030Search in Google Scholar

3. Bernardi, E., et al., The atmospheric corrosion of quaternary bronzes: The leaching action of acid rain. Corrosion Science2009,51 (1), 159-170.10.1016/j.corsci.2008.10.008Search in Google Scholar

4. FitzGerald, K. P., et al., Atmospheric corrosion of copper and the colour, structure and composition of natural patinas on copper. Corrosion Science2006,48 (9), 2480-2509.10.1016/j.corsci.2005.09.011Search in Google Scholar

5. Lv, G. C., et al., Towards understanding the role of amines in the SO2 hydration and the contribution of the hydrated product to new particle formation in the Earth’s atmosphere. Chemosphere2018,205, 275-285.10.1016/j.chemosphere.2018.04.11729702347Search in Google Scholar

6. Zhang, Q., et al., Variability of SO2 in an intensive fog in North China Plain: Evidence of high solubility of SO2. Particuology2013,11 (1), 41-47.10.1016/j.partic.2012.09.005Search in Google Scholar

7. Mlnařík, J.; Hruška, J., Direct measurement of a dew point in combustion equipment. Koroze a ochrana materiálů2012,56 (1), 19-24.10.2478/v10227-011-0004-9Search in Google Scholar

8. Mlnařík, J.; Hruška, J., The development of a probe for continuous monitoring of the dew point of combustion products in energy boilers. Koroze a ochrana materiálů2014,58 (3), 65-70.10.2478/kom-2014-0011Search in Google Scholar

9. Švadlena, J.; Stoulil, J., Evaluation of protective properties of acrylate varnishes used for conservation of historical metal artefacts. Koroze a ochrana materialu2017,61 (1), 25-31.10.1515/kom-2017-0003Search in Google Scholar

10. Kouřil, M., Monitoring atmosférické koroze. Koroze a ochrana materiálů2009,53 (3), 53-61.Search in Google Scholar

11. Kouřil, M., et al., Corrosion monitoring in the hands of restorers and conservators. Koroze a ochrana materiálů2012,53 (3), 67-75.Search in Google Scholar

eISSN:
1804-1213
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Industrielle Chemie, Chemieingenieurwesen, Materialwissenschaft, Keramik und Glas