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Electrochemical and XPS analytical investigation of the accelerative effect of bicarbonate/carbonate ions on AISI 304 in alkaline environment

机译:碱性环境中碳酸氢根/碳酸根离子对AISI 304的加速作用的电化学和XPS分析研究

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摘要

Passivation behavior and surface chemistry of 304 stainless steel in alkaline solution with different HCO3(-)/ CO32- concentrations are studied with a combined electrochemical and XPS analytical investigation. Cathodic and anodic reactions are inhibited and accelerated, respectively, attributed to the depletion of acceptable oxygen and variation of passive film properties. Increasing HCO3(-)/ CO32- concentration does not alter the bilayer structure but leads to an intensification in electric field strength and composition changes including enrichment of oxidized Cr, increase of Fe(II)/Fe(III) ratio, and decrease of OH-/O2- ratio of the film. Meanwhile, the film thickness is reduced and the point defect density is increased due to the enhanced film dissolution. High HCO3-/CO32- concentration increases the critical chloride concentration of 304 SS in alkaline solution, attributed to the inhibition of the localized acidification within the pits and suppression of the stable pit development.
机译:结合电化学和XPS分析研究,研究了不同HCO3(-)/ CO32-浓度下的304不锈钢在碱性溶液中的钝化行为和表面化学。阴极和阳极反应分别被抑制和加速,这归因于可接受的氧的消耗和钝化膜性能的变化。增加HCO3(-)/ CO32-的浓度不会改变双层结构,但会导致电场强度的增强和组成变化,包括氧化Cr的富集,Fe(II)/ Fe(III)比的增加以及OH的降低-/ O2-薄膜的比率。同时,由于增强的膜溶解性,减小了膜厚度并且增加了点缺陷密度。高HCO3- / CO32-浓度会增加碱性溶液中304 SS的临界氯化物浓度,这归因于坑内局部酸化的抑制和坑稳定发展的抑制。

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