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The influence of Ce3+ ions on the corrosion rate of stainless steel in acidic solutions of different pH-values

机译:Ce3 +离子对不同pH值酸性溶液中不锈钢腐蚀速率的影响

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The corrosion resistance of AISI 420 stainless steel in 0.1 mol L?1 H2SO4 + 0.1 mol L?1 Na2SO4 solutions at different pH-values and the inhibiting effect of Ce3+ ions was studied using electrochemical polarization methods. The results reveal decreasing of the corrosion rate with an increasing the pH of the solution, which demonstrates the progressive protective character of the inhibitor used. At pH lower than 3.33, the corrosion inhibition was most probably a result of the competitive adsorption of Ce3+ with H+ ions on the cathodic sites of the electrode surface, and it was found to be dependent on the relative concentration of H+/Ce3+. The peroxide generated from the oxygen reduction reaction at pH 3.33 was found to be capable oxidize trivalent cerium (Ce) to the tetravalent state. As obtained hydroxide precipitates act as diffusion barrier hindering the corrosion processes, whereafter a spontaneous passivity occurs on the steel surface at this pH.
机译:采用电化学极化方法研究了AISI 420不锈钢在0.1 mol L?1 H2SO4 + 0.1 mol L?1 Na2SO4溶液中在不同pH值下的耐蚀性和Ce3 +离子的抑制作用。结果表明,随着溶液pH值的升高,腐蚀速率降低,这表明所用抑制剂的逐步防护特性。在pH值低于3.33时,腐蚀抑制很可能是Ce3 +与H +离子在电极表面阴极位点上竞争性吸附的结果,并且发现腐蚀抑制取决于H + / Ce3 +的相对浓度。发现在pH 3.33下由氧还原反应产生的过氧化物能够将三价铈(Ce)氧化为四价态。所获得的氢氧化物沉淀物起着阻碍腐蚀过程的扩散屏障的作用,此后在此pH值下钢表面自然发生钝化。

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