28 results on '"Rajendran. S"'
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2. The role of phosphonates as transporters of Zn2+ ions in the inhibition of carbon steel in neutral solutions containing chlorides
3. Influence of sodium sulphite on corrosion inhibition by the sodium gluconate –Zn2+ system
4. Corrosion behaviour of carbon steel in the presence of N‐cetyl‐N,N,N‐trimethylammonium bromide, Zn2+ and calcium gluconate
5. Corrosion inhibition by phosphonic acid –Zn2+ systems for mild steel in chloride medium
6. Synergistic effect of 2‐chloroethyl phosphonic acid and Zn2+
7. HEDP‐Zn2+: a potential inhibitor system for mild steel in low chloride media
8. Influence of a cationic surfactant on the inhibition efficiency of calcium gluconate – Zn2+ system
9. Influence of substituents on the inhibition efficiency of phosphonic acid‐Zn2+ systems
10. Analysis of protective film formed on surface of mild steel immersed in Chloride ‐ HEDP‐molybdate ‐ Zn2+ environment
11. Synergistic and biocidal effects of 1‐hydroxyethane ‐1, 1‐diphosphate, Zn2+ and polycrylamide on the inhibition of corrosion of mild steel in neutral aqueous environment
12. Corrosion inhibition by phenyl phosphonate and Zn2+
13. Corrosion inhibition by ATMP‐molybdate‐Zn2+ system in low chloride media
14. Synergistic, antagonistic and biocidal effects of amino (trimethylene phosphonic acid), polyacrylamide and Zn2+ on the inhibition of corrosion of mild steel in neutral aqueous environment
15. Corrosion behaviour of carbon steel in the presence of N‐cetyl‐N,N,N‐trimethylammonium bromide, Zn2+ and calcium gluconate
16. Synergistic effect of 2‐chloroethyl phosphonic acid and Zn2+
17. HEDP‐Zn2+: a potential inhibitor system for mild steel in low chloride media
18. Influence of substituents on the inhibition efficiency of phosphonic acid‐Zn2+ systems
19. Analysis of protective film formed on surface of mild steel immersed in Chloride ‐ HEDP‐molybdate ‐ Zn2+environment
20. Synergistic and biocidal effects of 1‐hydroxyethane ‐1, 1‐diphosphate, Zn2+ and polycrylamide on the inhibition of corrosion of mild steel in neutral aqueous environment
21. Corrosion inhibition by ATMP‐molybdate‐Zn2+system in low chloride media
22. Synergistic, antagonistic and biocidal effects of amino (trimethylene phosphonic acid), polyacrylamide and Zn2+ on the inhibition of corrosion of mild steel in neutral aqueous environment
23. The role of phosphonates as transporters of Zn2ions in the inhibition of carbon steel in neutral solutions containing chlorides
24. Corrosion behaviour of carbon steel in the presence of NcetylN,N,Ntrimethylammonium bromide, Zn2and calcium gluconate
25. Corrosion inhibition by phosphonic acid –Zn2systems for mild steel in chloride medium
26. Analysis of protective film formed on surface of mild steel immersed in Chloride HEDPmolybdate Zn2environment
27. Synergistic, antagonistic and biocidal effects of amino trimethylene phosphonic acid, polyacrylamide and Zn2on the inhibition of corrosion of mild steel in neutral aqueous environment
28. Synergistic and biocidal effects of 1hydroxyethane 1, 1diphosphate, Zn2and polycrylamide on the inhibition of corrosion of mild steel in neutral aqueous environment
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