Tannins as interphase corrosion inhibitors for aluminum in near‐neutral chloride solutions

C. Byrne, Oriana D'Alessandro, C. Deyá
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引用次数: 4

Abstract

The addition of tara and quebracho colorado tannins remarkably reduces the corrosion rate of aluminum in near‐neutral and naturally aerated NaCl solutions. The experimental results (potentiodynamic polarization curves, corrosion potential measurements, scanning electron microscopy–energy‐dispersive X‐ray spectroscopy [SEM‐EDS] analysis on exposed surfaces) show that both tannins behave as a mixed‐type corrosion inhibitor of aluminum. In the absence of tannins, the SEM‐EDS analysis of the exposed samples demonstrates the accumulation of corrosion products and the existence of chlorinated compounds adsorbed on the metal surface. In the samples immersed in both tannins solutions, a more homogenous and compact layer is formed over the aluminum surface. Furthermore, in these layers chlorine was not found, revealing a high blocking capacity of the chloride adsorption when the tannins are present. Taking into account these findings, an inhibitory mechanism of aluminum corrosion is proposed. This mechanism is interphase inhibition, which involves the adsorption and incorporation of tannin molecules during the corrosion products passive layer formation, resulting in a protective three‐dimensional structure that retards both anodic and cathodic reactions.
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单宁在近中性氯溶液中作为铝的相间缓蚀剂
tara和quebracho colorado单宁的加入显著降低了铝在近中性和自然曝气NaCl溶液中的腐蚀速率。实验结果(电势极化曲线、腐蚀电位测量、暴露表面的扫描电子显微镜-能量色散X射线能谱[SEM - EDS]分析)表明,这两种单宁都表现为铝的混合型缓蚀剂。在没有单宁的情况下,暴露样品的SEM - EDS分析表明腐蚀产物的积累和金属表面吸附的氯化化合物的存在。在两种单宁溶液中浸泡的样品中,铝表面形成了更均匀和致密的层。此外,在这些层中没有发现氯,表明当单宁存在时氯化物吸附的高阻断能力。考虑到这些发现,提出了铝腐蚀的抑制机制。这种机制是相间抑制,在腐蚀产物被动层形成过程中,单宁分子的吸附和结合导致了一个保护性的三维结构,从而延缓了阳极和阴极反应。
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