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The Effect of Temperature and Acid Concentration on Corrosion of Low Carbon Steel in Hydrochloric Acid Media | Science Publications

机译:温度和酸浓度对低碳钢在盐酸介质中腐蚀的影响科学出版物

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> Problem statement: The effect of different temperatures and acid concentrations on the corrosion of low carbon steel in hydrochloric acid were addressed in this study. Approach: The effect of temperature was explained by application of Arrhenius equation and transition state theory, while the acid concentration effect was explained using reaction kinetic equations. The combined effect of temperature and acid concentration then modeled using a nonlinear regression method. Results: A detail of thermodynamic parameters of activation (E, ΔH* and ΔS*) and kinetic studies for the corrosion reaction were obtained. Nonlinear corrosion rates as a function of temperature and acid concentration equation were estimated with a good prediction corrosion rates values. Conclusion: The values of activation energy E and enthalpy of activation ΔH* decrease with increase in acid concentration indicating the increasing in reaction rate. Entropy of activation ΔS* tend to lower values with increasing in acid concentration which indicated that the activated complex was more orderly relative to the initial state. The corrosion reaction was approximately firs order reaction. The observed corrosion rate values from the experimental data were in a good agreement with that predicated by the mathematical equation.
机译: > 问题陈述:研究了不同温度和酸浓度对低碳钢在盐酸中腐蚀的影响。 方法:应用Arrhenius方程和过渡态理论解释了温度的影响,而使用反应动力学方程解释了酸浓度的影响。然后使用非线性回归方法对温度和酸浓度的组合效应进行建模。 结果:详细了解了活化的热力学参数(E,ΔH * 和ΔS * )以及腐蚀反应的动力学研究。非线性腐蚀速率随温度和酸浓度方程的变化而变化,并具有良好的预测腐蚀速率值。 结论:活化能E的值和活化焓ΔH * 随酸浓度的增加而降低,表明反应速率增加。随着酸浓度的增加,活化熵ΔS * 的值趋于降低,这表明活化的配合物相对于初始状态更为有序。腐蚀反应约为第一级反应。从实验数据中观察到的腐蚀速率值与数学方程式预测的值非常吻合。

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