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A new concept for corrosion inhibition of magnesium: Suppression of iron re-deposition

机译:抑制镁腐蚀的新概念:抑制铁的再沉积

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In our recent work (Hoche et al. 2016) we proposed that non-faradaic dissolution of Fe impurities and/or iron containing phases with subsequent re-deposition of thin film of pure ("in statu nascendi") iron enlarges cathodically active sites at the surface of corroding magnesium. The effect drastically accelerates corrosion of impurity containing Mg. In the present work we assume that if Fe re-deposition is prevented, the area of cathodic sites can be drastically decreased and hence corrosion of Mg can be suppressed. In this proof of concept work we use strong Fe3+ completing agents in order to remove dissolved iron cations from corrosion sites and prevent iron re-deposition. All used iron complexing agents efficiently lowered the corrosion rate of Mg. Direct correlation of complex stability with its inhibiting efficiency was established. It was shown that cyanide, salicylate, oxalate, methylsalicylate and thiocyanate efficiently reduce hydrogen evolution and suppress critical dark area formation. (c) 2015 Elsevier B.V. All rights reserved.
机译:在我们最近的工作中(Hoche等人,2016年),我们提出非法拉第溶解Fe杂质和/或含铁相,然后再沉积纯铁(“ status nascendi”)铁薄膜会扩大阴极上的阴极活性位点。腐蚀镁的表面。这种作用大大加速了含镁杂质的腐蚀。在目前的工作中,我们假设,如果防止铁的再沉积,则阴极部位的面积可以大大减少,因此可以抑制镁的腐蚀。在此概念验证工作中,我们使用强效的Fe3 +补全剂,以从腐蚀部位去除溶解的铁阳离子并防止铁重新沉积。所有使用的铁络合剂均有效降低了镁的腐蚀速率。建立了复杂稳定性与其抑制效率的直接关系。结果表明,氰化物,水杨酸盐,草酸盐,水杨酸甲酯和硫氰酸盐可有效减少氢的释放并抑制关键的暗区形成。 (c)2015 Elsevier B.V.保留所有权利。

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