低温地热系统中氧化还原电位对Q125、316L和C276钢腐蚀影响的评价

Samuel Bowman, Vikas Agrawal, Shikha Sharma
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摘要

采用时间序列实验,探讨了低温地热系统下低离子强度和中性水中流体氧化还原对Q125、316L和C276钢腐蚀的影响。将每个钢种的抛光样品分别暴露在氧化(H2O2)和还原性(掺杂锌)流体中24小时、1周和6周后,原子力显微镜结果显示Q125普遍腐蚀,而316L和C276则表现出点蚀、缝隙膨胀和边缘侵蚀腐蚀。次生沉积特征通常是与点蚀相邻的地形高点。这些特征可以通过高度回溯和相位回溯地形图之间非常强的空间相关性来识别。随着时间的推移,所有的钢在暴露于这两种流体后都变得越来越粗糙,而腐蚀速率则更加复杂。随着时间的推移,暴露于还原性流体中的样品的腐蚀速率增加,而C276和316L的腐蚀速率则下降。最后,开发了一种新的数据验证技术来解决腐蚀的固有可扩展性。结果表明,AFM扫描面积对测量表面粗糙度的影响不超过3个数量级。
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Evaluating the Impact of Redox Potential on the Corrosion of Q125, 316L, and C276 Steel in Low-Temperature Geothermal Systems
Time series experiments were used to explore the fluid redox impact on the corrosion of Q125, 316L, and C276 steels in low-ionic-strength and neutral water at temperature and pressure conditions associated with low-temperature geothermal systems. After exposing polished samples of each steel grade to an oxidizing (H2O2) and a reducing (Zn-doped) fluid for intervals of 24 h, 1 week, and 6 weeks, the atomic force microscopy results revealed general corrosion for Q125, while 316L and C276 exhibited pitting, crevice expansion, and edge attack corrosion. Secondary depositional features are frequently found as topographic highs, adjacent to pitting corrosion. These features may be identified as there is a very strong spatial correlation between the height retrace and phase retrace surface maps. All steels became progressively rougher over time after exposure to both fluids, while the corrosion rates were more complex. Samples exposed to the reducing fluid experienced an increase in the corrosion rate over time, while C276 and 316L experienced a decrease in the corrosion rate. Finally, a novel data validation technique was developed to address the intrinsic scalability of corrosion. The results indicate that the AFM scan area does not affect the measured surface roughness over nearly three orders of magnitude.
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