Corrosion Reviews, Volumes 12-13Scientific Publications Division, Freund Publishing House, 1994 |
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Page 219
... Seawater 3.2.2 . Sulphide Polluted Seawater 3.3 . Corrosion 3.3.1 . Chlorinated Seawater 3.3.2 . Sulphide Polluted Seawater 4. Discussion 4.1 . Chlorinated Seawater 4.2 . Sulphide Polluted Seawater 5. Conclusion 6. References Originally ...
... Seawater 3.2.2 . Sulphide Polluted Seawater 3.3 . Corrosion 3.3.1 . Chlorinated Seawater 3.3.2 . Sulphide Polluted Seawater 4. Discussion 4.1 . Chlorinated Seawater 4.2 . Sulphide Polluted Seawater 5. Conclusion 6. References Originally ...
Page 221
... seawater conditions . Two conditions have been selected , which correspond to strongly oxidising or reducing environments : ( i ) natural seawater with high chlorine concentrations ( 10 mg.1 - 1 residual ) at high temperature ( 45 ° C ) ...
... seawater conditions . Two conditions have been selected , which correspond to strongly oxidising or reducing environments : ( i ) natural seawater with high chlorine concentrations ( 10 mg.1 - 1 residual ) at high temperature ( 45 ° C ) ...
Page 231
... seawater . The pH mean value was 7.45 , but large fluctuations were observed : between 4.2 and 10.0 . Because sulphide was added as Na2S , the formation of H2S in the gaseous phase led to the alkalinization of the solution ( seawater ) ...
... seawater . The pH mean value was 7.45 , but large fluctuations were observed : between 4.2 and 10.0 . Because sulphide was added as Na2S , the formation of H2S in the gaseous phase led to the alkalinization of the solution ( seawater ) ...
Contents
G Hernández W H Hartt and H A Videla | 30 |
14 | 33 |
Cathodic Protection Criteria and Effectiveness in MIC | 36 |
Copyright | |
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