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Corrosion inhibition of carbon steel in cooling water systems by new organic polymers as green inhibitors

机译:新型有机聚合物作为绿色抑制剂可抑制冷却水系统中碳钢的腐蚀

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摘要

Using the microwaves energy new organic polymers were synthesized by radicalic polymerization. These new organic compounds have anti-corrosive and anti-scale properties and for this reason, were used for cooling water systems protection. We presume that, these new organic polymers inhibit corrosion of carbon steel by a protective mechanism, forming insoluble iron complexes and repairing the porous oxide layers. The methods employed were potentiodynamic polarization, electrochemical impedance spectroscopy, and metallurgical microscopy techniques. The inhibition efficiency was high in all the studied cases. The corrosion parameters obtained from polarization curves and from EIS spectra are in good concordance and point out the inhibitory action of these new organic polymers. The adsorptions of the organic compounds on the carbon steels surface obeyed Langmuir's isotherm. Using FT-IR it was proved the adsorption of organic inhibitors and the formation of corrosion products on the carbon steels surface. The inhibition process was attributed to the formation of the adsorbed film on the metal surface that protects the metal against corrosive agents. The EIS measurements have confirmed this protection and pointed out the formation of adsorption layers on the electrode surface.
机译:利用微波能量,通过自由基聚合合成了新的有机聚合物。这些新的有机化合物具有抗腐蚀和防垢性能,因此被用于冷却水系统的保护。我们推测,这些新的有机聚合物通过保护机制抑制了碳钢的腐蚀,形成了不溶性的铁络合物并修复了多孔氧化物层。所采用的方法是电位动力学极化,电化学阻抗谱和冶金显微技术。在所有研究的病例中,抑制效率都很高。从极化曲线和EIS光谱获得的腐蚀参数具有很好的一致性,并指出了这些新型有机聚合物的抑制作用。碳钢表面上有机化合物的吸附遵循Langmuir等温线。使用FT-IR证明了有机抑制剂的吸附和碳钢表面上腐蚀产物的形成。抑制过程归因于在金属表面上形成的吸附膜,可保护金属免受腐蚀剂的侵害。 EIS测量结果证实了这种保护作用,并指出了在电极表面上形成吸附层的情况。

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