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Inhibitory action of xylenol orange on aluminum corrosion in hydrochloric acid solution

机译:二甲酚橙对盐酸溶液中铝腐蚀的抑制作用

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The inhibition effect of xylenol orange on the corrosion of aluminum (2S Grade) in 0.4-0.6 M HCL over the temperature range 313-333K has been studied. Both thermodynamic parameters and kinetic parameters with the inhibition effect have been correlated. The inhibition efficiencies of xylenol orange are investigated by weight loss and potentiodynamic polarization methods. The corrosion rate of aluminum decreases with increasing inhibitor concentrations and the efficiency of inhibition increases with increasing concentration of inhibitor up to almost 87% in 0.4M HCL and up to 84% in 0.6M HCL. The concentrations of inhibitor have been kept in the range 2-8 mM. It is also observed that the inhibition efficiency decreases with increasing HC1 concentration and temperature. The adsorption of inhibitor on the aluminum surface obeys the Langmuir adsorption isotherm equation. The inhibition effect is satisfactorily explained by both thermodynamic and kinetic parameters. The experimental data have been successfully related with adsorption theory and kinetic equations. Polarization curves show that xylenol orange is a mixed-type inhibitor in hydrochloric acid.
机译:研究了二甲酚橙在313-333K温度范围内在0.4-0.6 M HCl中对铝(2S级)腐蚀的抑制作用。具有抑制作用的热力学参数和动力学参数已经相关。通过重量损失和电位动力学极化方法研究了二甲酚橙的抑制效率。铝的腐蚀速率随抑制剂浓度的增加而降低,而缓蚀效率随抑制剂浓度的增加而增加,在0.4M盐酸中高达87%,在0.6M盐酸中高达84%。抑制剂的浓度一直保持在2-8 mM之间。还观察到,抑制效率随着HCl浓度和温度的升高而降低。抑制剂在铝表面的吸附遵循Langmuir吸附等温线方程。热力学和动力学参数均令人满意地解释了抑制作用。实验数据已经成功地与吸附理论和动力学方程联系起来。极化曲线表明,二甲酚橙是盐酸中的混合型抑制剂。

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