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The Role of Synthetic Hydrocarbon on Corrosion Behavior of X-65 (UNS K03014) Carbon Steel in a Multi-Phase Flow System

机译:合成烃对多相流系统中X-65(UNS K03014)碳钢腐蚀行为的作用

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The role of a synthetic hydrocarbon (Isopar M) on the flow-induced corrosion and erosion-corrosion behavior of X-65 (UNS K03014) carbon steel has been investigated in CO_2-saturated conditions. A rotating cylinder electrode (RCE) was used in conjunction with electrochemical techniques and gravimetric measurements to determine the influence of hydrocarbon at various rotation speeds. The addition of 20% Isopar M formed an oil-in-water emulsion which was found to increase the rate of anodic dissolution of carbon steel, particularly at low rotation speeds. At higher flow velocities, emulsion stability and competitive wettability helped to minimize the corrosive impact of the hydrocarbon. The synthetic hydrocarbon phase was believed to increase the kinetics of the corrosion reaction while also reducing the impact energy from impinging sand particles under erosion-corrosion conditions. A water-in-oil emulsion was formed at a water cut of 20% which reduced degradation rates. This effect was most likely attributed to a reduction in surface wettability by the brine phase. Degradation mechanisms are also interpreted using scanning electron microscopy.
机译:已经研究了在CO_2饱和条件下,合成烃(Isopar M)在X-65(UNS K03014)碳钢的流动诱导腐蚀和腐蚀腐蚀行为中的作用。旋转圆柱电极(RCE)与电化学技术和重量测量结合使用,以确定碳氢化合物在各种转速下的影响。添加20%Isopar M形成水包油乳液,发现该乳液可提高碳钢的阳极溶解速度,特别是在低转速下。在较高的流速下,乳液的稳定性和竞争性的润湿性有助于最大程度地减少碳氢化合物的腐蚀影响。据信合成烃相可以增加腐蚀反应的动力学,同时还可以减少在腐蚀-腐蚀条件下撞击砂粒的冲击能。在20%的含水率下形成油包水乳液,这降低了降解率。这种作用很可能归因于盐水相降低了表面润湿性。还可以使用扫描电子显微镜解释降解机理。

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