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Boric Acid Corrosion of Concrete Rebar

机译:混凝土钢筋的硼酸腐蚀

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Borated water leakage through spent fuel pools (SFPs) at pressurized water reactors is a concern because it could cause corrosion of reinforcement steel in the concrete structure and compromise the integrity of the structure. Because corrosion rate of carbon steel in concrete in the presence of boric acid is lacking in published literature and available data are equivocal on the effect of boric acid on rebar corrosion,corrosion rate measurements were conducted in this study using several test methods. Rebar corrosion rates were measured in (i) borated water flowing in a simulated concrete crack,(ii) borated water flowing over a concrete surface,(iii) borated water that has reacted with concrete,and (iv) 2,400 ppm boric acid solutions with pH adjusted to a range of 6.0 to 7.7. The corrosion rates were measured using coupled multielectrode array sensor (CMAS) and linear polarization resistance (LPR) probes,both made using carbon steel. The results indicate that rebar corrosion rates are low (~1 μm/yr or less) when the solution pH is ~7.1 or higher. Below pH ~7.1,the corrosion rate increases with decreasing pH and can reach~100 μm/yr in solutions with pH less than ~6.7. The threshold pH for carbon steel corrosion in borated solution is between 6.8 and 7.3.
机译:加压水反应堆中的硼酸漏水通过燃料池(SFP)是一个问题,因为它可能导致混凝土结构中的钢筋腐蚀,并损害结构的完整性。因为在发表的文献中缺乏硼酸存在的混凝土中碳钢的腐蚀速率和可用数据在硼酸对钢筋腐蚀的影响中,因此使用几种测试方法在本研究中进行了腐蚀速率测量。在(i)在模拟混凝土裂缝中流动的(i)硼酸化水中测量钢筋腐蚀速率,(ii)流过混凝土表面的硼化水,(iii)与混凝土反应的硼酸硼水,和(iv)2,400ppm硼酸溶液pH调整到6.0到7.7的范围。使用耦合的多电极阵列传感器(CMA)和线性偏振电阻(LPR)探针,使用碳钢测量腐蚀速率。结果表明,当溶液pH为7.1或更高时,钢筋腐蚀速率低(〜1μm/ yr或更低)。低于pH〜7.1,腐蚀速率随着pH的降低而增加,可以在pH小于〜6.7的溶液中达到〜100μm/ yr。硼酸溶液中碳钢腐蚀的阈值pH为6.8和7.3。

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