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Effect of the Acid Environment on the Electrochemical Behaviour of 1045 Steel Reinforced Cement

机译:酸性环境对1045钢增强水泥电化学行为的影响

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External corrosion is one of the most common causes of oilwell casing failure.Hostile environments can be due to acidizing treatments.Although it is common to add corrosion inhibitors and oxygen scavengers in acidic solutions to control external casing corrosion,their real efficiency is unknown yet.Therefore,it is important to establish how aggressive to steel are the different hostile environments to help decide which acidic systems can be used.A comparative evaluation of the corrosion of steel immersed in hardened cement slurries submitted to commonly acidizing agents is suggested.The performance of Special Class Portland Cement Slurries reinforced with polished SAE 1045 steel was evaluated by electrochemical measurements as a function of time.Open circuit potential,polarization curves and electrochemical impedance spectroscopy were studied.15.0 wt% HC1,12.0 wt% HC1 + 3.0 wt% HF (regular mud acid),10.0 wt% HAc + 1.5 wt% HF and a simulated hardened cement slurry pore solution were used as electrolytes.The most aggressive acid solution to plain Portland hardened cement slurries was the regular mud acid.10.0 wt% HAc + 1.5 wt% HF electrolytes were the least aggressive ones,showing open circuit potentials around +250 mV compared to -130 mV of the simulated hardened cement slurry pore solution after the first 24 hours of immersion.This behavior was observed during two months at least.Similar corrosion rates were shown between both electrolytes,around 0.01 μA.cm~(-2).Total impedance values,insipient arcs and large polarization resistance capacitive arcs on the Nyquist plots,indicating passivity process,confirmed the behaviour of the system in the 10.0 wt% HAc + 1.5 wt% HF electrolyte.
机译:外部腐蚀是油井套管失效的最常见原因之一。恶劣的环境可能是由于酸化处理造成的。尽管在酸性溶液中添加腐蚀抑制剂和除氧剂来控制外部套管腐蚀是很常见的,但其实际效率尚不清楚。因此,重要的是要确定不同的恶劣环境对钢的侵蚀能力,以帮助决定可以使用哪种酸性体系。建议对浸渍在通常酸化剂中的硬化水泥浆中的钢的腐蚀进行比较评估。通过电化学测量对随时间变化的SAE 1045增强特种硅酸盐水泥浆进行了评估,研究了开路电势,极化曲线和电化学阻抗谱.15.0 wt%HC1,12.0 wt%HC1 + 3.0 wt%HF(普通泥酸),10.0 wt%HAc + 1.5 wt%HF和模拟的硬化水泥浆孔溶液普通波特兰硬化水泥浆的最强酸溶液是普通的泥酸.10.0 wt%HAc + 1.5 wt%HF电解质是最弱的,显示开路电势约为+250 mV,而-130 mV浸入后24小时内模拟硬化水泥浆孔隙溶液的腐蚀行为,至少在两个月内观察到此行为。两种电解质之间的腐蚀速率相似,约为0.01μA.cm〜(-2)。总阻抗值, Nyquist图上的钝性电弧和较大的极化电阻电容性电弧表明无源过程,证实了该体系在10.0%(重量)HAc + 1.5%(重量)HF电解质中的行为。

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