N, N-DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE

dc.contributor.authorR. T., . VashiR.
dc.contributor.author. T., VashiR.
dc.contributor.author, Zele 2, S. A.
dc.date.accessioned2023-05-31T10:02:22Z
dc.date.available2023-05-31T10:02:22Z
dc.date.issued2022-09-01
dc.descriptionarticalen_US
dc.description.abstractThe inhibitive effect of N,The inhibitive effect of N, The inhibitive effect of N, The inhibitive effect of N, The inhibitive effect of N,The inhibitive effect of N,The inhibitive effect of N,The inhibitive effect of N,The inhibitive effect of N,The inhibitive effect of N,The inhibitive effect of N,The inhibitive effect of N,The inhibitive effect of N, The inhibitive effect of N,The inhibitive effect of N,The inhibitive effect of N,N-Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 Dimethylaniline (DMA) as corrosion inhibitor for zinc in 0.1, 0.3 and 0.5 M Hand 0.5 M H and 0.5 M H and 0.5 M H and 0.5 M Hand 0.5 M Hand 0.5 M H2SO 4 solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic solutions has been investigated by using weight loss, potentiodynamic polarizatio polarizatio polarizatio polarization and el n and eln and el n and eln and eln and elec trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results trochemical impedance spectroscopy (EIS) techniques. The results obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of obtained reveal that inhibition efficiency (I.E.) increases with increase in concentration of inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increinhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration incre inhibitors but decreases with increase in temperature. As inhibitor concentration increases ases ases ases ases corcor ro sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half sion rate decreases. The constant ‘k’ decreases while half -life ‘t life ‘t life ‘t life ‘t life ‘t life ‘t ½’ increases with the ’ increases with the ’ increases with the ’ increases with the ’ increases with the ’ increases with the ’ increases with the ’ increases with the ’ increases with the ’ increases with the ’ increases with the ’ increases with the increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM increase in concentration of inhibitor. DMA showed maximum I. E. 93.51 % at 60 mM 0.5 M H 0.5 M H 0.5 M H0.5 M H0.5 M H2SO 4 acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in acid at 301 K. The inhibition effect is discussed in view of view of view of view of DM A molecules A molecules A molecules A molecules A molecules A molecules A molecules adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve adsorbed on the metal surface and it obeys Langmuir adsorption isotherm. Polarization curve indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions. indicates that inhibitor act as mixed type for zinc corrosion in sulphuric acid solutions.en_US
dc.identifier.citationR. T. VashiR. T. VashiR. T. VashiR. T. VashiR. T. VashiR. T. VashiR. T. VashiR. T. VashiR. T. VashiR. T. Vashi 1, S. A. Zele, S. A. Zele, S. A. Zele, S. A. Zele, S. A. Zele, S. A. Zele , S. A. Zele, S. A. Zele, S. A. Zele, S. A. Zele 2, B. PatelB. B. PatelB. B. PatelB. B. PatelB. B. PatelB. B. PatelB. B. PatelB. B. PatelB. B. Patel 3 , Neha I Prajapat Neha I Prajapat Neha I PrajapatNeha I PrajapatNeha I PrajapatNeha I PrajapatNeha I PrajapatNeha I PrajapatNeha I Prajapat Neha.N, N-DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE. Journal of Fundamental and sciences. vol.14, no 3. sep 2022. Faculty of exact sciences. university of el oued. [visited in 14/05/2022. available from [copy the link here]en_US
dc.identifier.urihttp://dspace.univ-eloued.dz/handle/123456789/25221
dc.language.isoenen_US
dc.publisheruniversity of eloued جامعة الواديen_US
dc.relation.ispartofseries1112-9867;
dc.subjectZincZinc , H2SO 4, N, N -Dimethylaniline, Corro Dimethylaniline, Corro Dimethylaniline, CorroDimethylaniline, CorroDimethylaniline, CorroDimethylaniline, Corro Dimethylaniline, CorroDimethylaniline, Corrosion, Posion, Po sion, Posion, Posion, Pola rization, EISrization, EIS rization, EIS rization, EIS rization, EISrization, EISrization, EISrization, EIS.en_US
dc.titleN, N-DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINE AS CORROSION INHIBITOR FOR ZINC IN DIMETHYLANILINEen_US
dc.typeArticleen_US

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