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The synergistic inhibition effect between imidazoline-based dissymmetric bis-quaternary ammonium salts and thiourea on Q235 steel in CO2 corrosion process

机译:咪唑啉基不对称双季铵盐和硫脲对Q235钢在CO2腐蚀过程中的协同抑制作用

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The inhibition effect of imidazoline-based dissymmetric bis-quaternary ammonium salt (DBA) and Thiourea (TU) on Q235 steel in CO2-saturated simulated oilfield-produced water was studied by means of the weight-loss method, polarization and electrochemical impedance spectroscopy (EIS). The polarization measurements reveal that the compound inhibitors are anodic-type inhibitors that mainly inhibit the anodic process. EIS results show that the changes in the impedance parameters are due to the formation of a protective layer on the Q235 steel surface by the adsorption of inhibitor molecules. The results of energy dispersive X-ray spectroscopy and scanning electron microscopy confirm the existence of the protective layer. The results also show that adsorption model obeys to the Flory-Huggins adsorption isotherm. The synergism parameter suggests that the synergistic effect is obvious at concentrations of 100 and 200 mg L-1, and there is a cooperative mechanism between the DBA and TU.
机译:通过失重法,极化法和电化学阻抗谱法研究了咪唑啉基不对称双季铵盐(DBA)和硫脲(TU)对Q235钢在CO2饱和模拟油田采出水中的缓蚀作用。 EIS)。极化测量结果表明,化合物抑制剂是主要抑制阳极过程的阳极型抑制剂。 EIS结果表明,阻抗参数的变化是由于Q235钢表面通过吸附抑制剂分子而形成的保护层所致。能量色散X射线光谱和扫描电子显微镜的结果证实了保护层的存在。结果还表明,吸附模型符合Flory-Huggins吸附等温线。协同作用参数表明,在100和200 mg L-1的浓度下,协同作用是明显的,并且DBA和TU之间存在协同作用机制。

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