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首页> 外文期刊>Egyptian journal of petroleum >Fluvoxamine-based corrosion inhibitors for J55 steel in aggressive oil and gas well treatment fluids
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Fluvoxamine-based corrosion inhibitors for J55 steel in aggressive oil and gas well treatment fluids

机译:基于氟伏沙明的J55钢腐蚀抑制剂在腐蚀性油气井处理液中的应用

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摘要

Fluvoxamine (FLU), a non-toxic compound was investigated as an alternative anti-corrosive additive for inhibition of J55 steel corrosion in acidic oil well treatment fluids. The aggressive fluid was simulated using 15% and 1M HCl. Corrosion of the steel was monitored by Electrochemical Impedance Spectroscopy (EIS), Potentiodynamic Polarization (PDP), Linear Polarization Resistance (LPR), Electrochemical Frequency Modulation (EFM) and Weight Loss (WL) techniques. UV–Vis spectroscopy provided evidence of formation of a complex surface film due to adsorption of FLU on the J55 steel surface. The adsorption process was both physical and chemical in mechanism as best approximated by the Langmuir adsorption isotherm. The adsorption was also spontaneous and exothermic in the direction of increase in entropy of the bulk phase. Maximum inhibition efficiency was obtained with 1.0μM FLU and decreased from 91.5% to 78.0% when concentration of HCl was increased from 1M to 15% at 30°C. Effectiveness of FLU declined with an increase in temperature and improved with an increase in concentration of FLU. Blending of FLU with some intensifiers improved the efficiency from 68% and 40% to 88% and 72% in 1M and 15% HCl respectively at 90°C. EIS measurement reveals that the corrosion process was controlled by charge transfer process. PDP measurements showed that FLU acts as a mixed type inhibitor. Inhibition efficiency values obtained from the different techniques were comparable. SEM micrographs of J55 steel surface indicate good surface protection of FLU. Theoretical calculations were performed using Material Studio Acceryls 7.0 to relate electronic properties of FLU with its structure.
机译:氟伏沙明(FLU)是一种无毒的化合物,已被研究用作抑制酸性油井处理液中J55钢腐蚀的替代抗腐蚀添加剂。使用15%和1M HCl模拟侵蚀性流体。通过电化学阻抗谱(EIS),电势极化(PDP),线性极化电阻(LPR),电化学调频(EFM)和失重(WL)技术监控钢的腐蚀。 UV-Vis光谱法提供了证据,表明J55钢表面吸附了FLU,从而形成了复杂的表面膜。吸附过程在机理上既是物理过程也是化学过程,最好通过Langmuir吸附等温线近似。在本体相的熵增加的方向上,吸附也是自发的并且放热的。在30°C下,当HCl浓度从1M增加到15%时,使用1.0μMFLU可获得最大抑制效率,并且从91.5%下降到78.0%。 FLU的有效性随温度的升高而下降,并随FLU浓度的增加而提高。在90°C下,在1M和15%HCl中将FLU与某些增强剂共混可将效率从68%和40%分别提高到88%和72%。 EIS测量表明腐蚀过程受电荷转移过程控制。 PDP测量表明,FLU充当混合型抑制剂。从不同技术获得的抑制效率值是可比的。 J55钢表面的SEM显微照片表明FLU具有良好的表面保护性能。使用Material Studio Acceryls 7.0进行了理论计算,以将FLU的电子特性与其结构相关联。

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