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Coupling Effects of pH and Dissolved Oxygen on the Corrosion Behavior and Mechanism of X80 Steel in Acidic Soil Simulated Solution

机译:pH与溶解氧的耦合对X80钢在酸性土壤模拟溶液中的腐蚀行为及机理的影响

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摘要

In an acidic red soil environment, the corrosion mechanism of X80 steel may be closely related to the pH value and oxygen content, but it has not yet formed a systematic understanding. In this paper, the coupling effects of pH and dissolved oxygen on the corrosion behavior and mechanism of X80 steel in an acidic soil simulated solution were further analyzed by electrochemical methods and three-dimensional video microscope. Results showed that the hydrogen reduction reaction was almost the only cathode process in the anoxic and low pH system, and small and dense pits were present on the electrode surface. pH value increased, the pits decreased, but the size of pits increased. In the oxygen-adequate system, oxygen-consuming (OC) corrosion preferentially occurred, and a protective corrosion product layer (including FeOOH, Fe O , etc.) might be formed accordingly, but the proportion of hydrogen evolution (HE) increased and the product layer had defects at a low pH environment. The specific corrosion mechanism of X80 steel in an acidic soil simulated solution is described in the relevant models.
机译:在酸性红壤环境中,X80钢的腐蚀机理可能与pH值和氧含量密切相关,但尚未形成系统的认识。本文通过电化学方法和三维视频显微镜进一步分析了pH和溶解氧对X80钢在酸性土壤模拟溶液中的腐蚀行为和机理的耦合作用。结果表明,氢还原反应几乎是缺氧和低pH系统中唯一的阴极过程,电极表面上存在小而致密的凹坑。 pH值增加,小孔减少,但小孔尺寸增加。在氧气充足的系统中,优先发生耗氧(OC)腐蚀,并且可以相应地形成保护性腐蚀产物层(包括FeOOH,Fe O等),但是析氢(HE)的比例增加,并且产品层在低pH环境下有缺陷。相关模型描述了X80钢在酸性土壤模拟溶液中的特定腐蚀机理。

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