The electrochemical effect of NaCl concentrations (1-5 wt.%) on the corrosion, pitting potential and passivation characteristics of type 439LL ferritic stainless steels was studied in 1 M and 3 M H2SO4 solutions under the inhibiting action of Rosmarinus officinalis through potentiodynamic polarization resistance technique and IR spectroscopy. Results showed that the pitting potential decreased with significant increase in corrosion rates as the concentration of NaCl increased in the absence of Rosmarinus officinalis. Increase in pitting potential, passivation characteristics with significant decrease in corrosion rate was observed with increase in Rosmarinus officinalis concentrations. The average inhibition efficiency of 85 % was obtained....
The synergistic effect of the corrosion inhibition properties of 2-methoxy-4-formylphenol and sodium...
The corrosion of austenitic stainless steel (type 304) in dilute sulphuric acid solutions in additio...
The pitting corrosion behavior of 301, 304 and 316 austenitic stainless steels in 2M H2SO4 at 0–1.5%...
The electrochemical behaviour and corrosion inhibition of mild steel in 0.5M and 1M dilute sulpuric ...
Electrochemical analysis of the corrosion inhibition and surface protection properties of the combin...
The data of electrochemical analysis of Rosmarinus officinalis (RO) essential oil effect on high car...
The performances of the extract obtained from Rosmarinus officinalis (RO) on the corrosion inhibitio...
The performances of the extract obtained from Rosmarinus officinalis (RO) on the corrosion inhibitio...
The synergistic reaction of Rosmarinus officinalis and trypsin complex on the susceptibility of medi...
The corrosion polarization behaviour of 434 ferritic stainless (434ST) was studied in 1MH2SO4 at 0....
The corrosion inhibition effect of environmentally friendly organic admixture of Rosmarinus offici...
The synergistic effect of the corrosion inhibition properties of 2-methoxy-4-formylphenol and sodium...
The synergistic reaction of Rosmarinus officinalis and trypsin complex on the susceptibility of medi...
The corrosion behavior and pitting corrosion resistance of 439 ferritic, 301 austenitic, 420 marten...
The synergistic effect of the corrosion inhibition properties of 2-methoxy-4-formylphenol and sodium...
The synergistic effect of the corrosion inhibition properties of 2-methoxy-4-formylphenol and sodium...
The corrosion of austenitic stainless steel (type 304) in dilute sulphuric acid solutions in additio...
The pitting corrosion behavior of 301, 304 and 316 austenitic stainless steels in 2M H2SO4 at 0–1.5%...
The electrochemical behaviour and corrosion inhibition of mild steel in 0.5M and 1M dilute sulpuric ...
Electrochemical analysis of the corrosion inhibition and surface protection properties of the combin...
The data of electrochemical analysis of Rosmarinus officinalis (RO) essential oil effect on high car...
The performances of the extract obtained from Rosmarinus officinalis (RO) on the corrosion inhibitio...
The performances of the extract obtained from Rosmarinus officinalis (RO) on the corrosion inhibitio...
The synergistic reaction of Rosmarinus officinalis and trypsin complex on the susceptibility of medi...
The corrosion polarization behaviour of 434 ferritic stainless (434ST) was studied in 1MH2SO4 at 0....
The corrosion inhibition effect of environmentally friendly organic admixture of Rosmarinus offici...
The synergistic effect of the corrosion inhibition properties of 2-methoxy-4-formylphenol and sodium...
The synergistic reaction of Rosmarinus officinalis and trypsin complex on the susceptibility of medi...
The corrosion behavior and pitting corrosion resistance of 439 ferritic, 301 austenitic, 420 marten...
The synergistic effect of the corrosion inhibition properties of 2-methoxy-4-formylphenol and sodium...
The synergistic effect of the corrosion inhibition properties of 2-methoxy-4-formylphenol and sodium...
The corrosion of austenitic stainless steel (type 304) in dilute sulphuric acid solutions in additio...
The pitting corrosion behavior of 301, 304 and 316 austenitic stainless steels in 2M H2SO4 at 0–1.5%...