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Corrosion kinetics of type 310 EHP stainless steel in nitric acid with Cr(VI)

机译:310型EHP不锈钢在硝酸和Cr(VI)中的腐蚀动力学

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© 2016, Japan Society of Corrosion Engineering. All rights reserved.Corrosion kinetics of a stainless steel in nitric acid at elevated temperature has been investigated with special emphasis placed on its correlation with reduction rate of Cr (VI) in the solution. Extra High Purity (EHP) stainless steel, which is immune to intergranular corrosion in trans-passive potential range in nitric acid solution, has been employed to examine the dominant factor of corrosion rate. The results indicate that dissolution amount of the alloy agrees well with the stoichiometric value of dissolution based on the reduction amount of Cr (VI). This fact means that the dissolution kinetics of the stainless steel is simply dominated by reduction rate of Cr (VI) in the boiling nitric acid including Cr(VI). Reduction rate constant of Cr (VI) follows the identical Arrhenius equation including all the data with and without boiling, although oxidation rate constant of Cr (III) to Cr (VI) is strongly affected by boiling. A dominant factor of corrosion rate has been cleared based on the reduction rate constant of Cr (VI) and the oxidation rate constant of Cr (III).
机译:© 2016年,日本腐蚀工程学会。保留所有权利。研究了不锈钢在高温下在硝酸中的腐蚀动力学,特别强调了其与溶液中Cr(VI)还原率的相关性。超高纯 (EHP) 不锈钢在硝酸溶液中的反被动电位范围内不受晶间腐蚀的影响,已被用于研究腐蚀速率的主要因素。结果表明,该合金的溶出量与基于Cr(VI)还原量的溶解化学计量值吻合较好。这一事实意味着不锈钢的溶解动力学只是由沸腾硝酸中Cr(VI)的还原率决定,包括Cr(VI)。Cr (VI) 的还原速率常数遵循相同的 Arrhenius 方程,包括所有有和没有沸腾的数据,尽管 Cr (III) 到 Cr (VI) 的氧化速率常数受沸腾的强烈影响。根据Cr(VI)的还原速率常数和Cr(III)的氧化速率常数,清除了腐蚀速率的一个主导因素。

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