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首页> 外文期刊>Protection of Metals and Physical Chemistry of Surfaces >Synergism between Tartaric acid and Zinc ions under hydrodynamic conditions for corrosion inhibition of steel in cooling water solution-electrochemical impedance and morphological studies
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Synergism between Tartaric acid and Zinc ions under hydrodynamic conditions for corrosion inhibition of steel in cooling water solution-electrochemical impedance and morphological studies

机译:钢水动力学条件下酒石酸与锌离子之间的协同作用,用于冷却水溶液 - 电化学阻抗及形态学研究的钢腐蚀抑制作用

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摘要

A study of the St37 steel rotating disc electrode/cooling water interface was carried out using an environmentally friendly inhibitor mixture including Tartaric acid (TaA) and Zinc sulfate. Electrochemical Impedance Spectroscopy measurements were performed in the absence and presence of inhibitor in cooling water under static conditions and at different rotation speeds. TaA did not show good inhibition efficiency at quiescent conditions. However, its performance became significantly better in the presence of Zn2+ ions. The increase in electrode rotation speed also enhanced the inhibition efficiency of TaA and its mixture with Zn2+ ions. The synergism between TaA and Zn2+ ions and the solution hydrodynamics promoted the formation and adsorption of Tartrate-Zn2+ complexes on the metal surface, leading to a highly protective layer formed on metal surface as a barrier against diffusion of corrosive ions. Analysis by scanning electron microscopy and energy dispersive X-ray analysis was presented for both the corroded and protected metal surfaces. Based on results, a mechanism for corrosion inhibition and the synergism between two components was proposed.
机译:使用包括酒石酸(TAA)和硫酸锌的环保抑制剂混合物进行了对ST37钢旋转盘电极/冷却水界面的研究。在静态条件下的冷却水中的抑制剂的不存在和存在下进行电化学阻抗光谱测量测量。 TAA在静态条件下没有显示出良好的抑制效率。然而,在Zn2 +离子存在下,其性能明显更好。电极转速的增加还提高了TaA及其与Zn2 +离子的混合物的抑制效率。 TaA和Zn2 +离子和溶液流体动力学之间的协同作用促进了金属表面上的Tarrrate-Zn2 +络合物的形成和吸附,导致在金属表面上形成的高度保护层,作为腐蚀离子的扩散的屏障。通过扫描电子显微镜和能量分散X射线分析进行分析,用于腐蚀和保护的金属表面。基于结果,提出了一种腐蚀抑制的机制和两个组分之间的协同作用。

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