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Sodium nitrite as a corrosion inhibitor of copper in simulated cooling water

机译:亚硝酸钠作为模拟冷却水中铜的腐蚀抑制剂

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摘要

Abstract The corrosion inhibition behavior of sodium nitrite (NaNO2) towards pure copper (99.95%) in simulated cooling water (SCW) was investigated by means of electrochemical impedance spectroscopy (EIS) and dynamic electrochemical impedance spectroscopy (DEIS). NaNO2 interferes with metal dissolution and reduce the corrosion rate through the formation or maintenance of inhibitive film on the metal surface. Surface morphologies illustrated that the surface homogeneity increased on adding sodium nitrite. Sodium nitrite’s adsorption on copper surface followed the modified form of Langmuir, Freundlich and Frumkin isotherms. Physiosorption mode was involved in the corrosion protection. Electrochemical results revealed an corrosion resistance of copper increases on increasing the inhibitor concentration. The DEIS results indicated that copper corrosion mechanism could be hindered by 50% even after interval of 24 h by optimum concentration of sodium nitrite. The maximum inhibition was achieved with 2000 ppm of NaNO2. With this concentration, inhibition efficiency of up to 61.8% was achievable.
机译:摘要通过电化学阻抗光谱(EIS)和动态电化学阻抗谱(DEI)研究了模拟冷却水(SCW)掺入硝酸钠(NANO2)掺入纯铜(99.95%)的腐蚀抑制作用。 Nano2干扰金属溶解并通过在金属表面上的形成或维持抑制膜的形成或维持来降低腐蚀速率。表面形态学表明,表面均匀性增加了加入亚硝酸钠。亚硝酸钠对铜表面的吸附,然后是兰姆鲁,Freundlich和Frumkin等温线的改良形式。物质模式参与了腐蚀保护。电化学效果显示铜的耐腐蚀性增加对增加抑制剂浓度。 DEIS结果表明,即使通过亚硝酸钠的最佳浓度为24小时,铜腐蚀机构也可以阻碍50%。用2000ppm纳米2达到最大抑制。通过这种浓度,可实现高达61.8%的抑制效率。

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