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Experimental Study and Reactive Transport Modeling of Boric Acid Leaching of Concrete

机译:混凝土硼酸浸出的实验研究与反应性建模

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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,compromise the integrity of the structure,or cause unmonitored releases of contaminated water to the environment. Experimental data indicate that pH is a critical parameter that determines the corrosion susceptibility of rebar in borated water and the degree of concrete degradation by boric acid leaching. In this study,reactive transport modeling of concrete leaching by borated water was performed to provide information on the solution pH in the concrete crack or matrix and the degree of concrete degradation at different locations of an SFP concrete structure exposed to borated water. Simulations up to 100 years were performed using different boric acid concentrations,crack apertures,and solution flow rates. Concrete cylinders were immersed in boric acid solutions for several months and the mineralogical changes and boric acid penetration in the concrete cylinder were evaluated as a function of time. The depths of concrete leaching by boric acid solution derived from the reactive transport simulations were compared with the measured boric acid penetration depth.
机译:加压水反应堆中的硼酸漏水通过废燃料池(SFP)是一个问题,因为它可能导致混凝土结构中的钢筋腐蚀,损害结构的完整性,或者导致未受监控的污染水释放到环境中。实验数据表明pH是一种关键参数,该参数决定了钢筋在硼酸水中的腐蚀敏感性以及硼酸浸出的混凝土降解程度。在该研究中,进行了硼酸化水的混凝土浸出的反应性运输建模,以提供关于混凝土裂缝或基质的溶液pH的信息以及在暴露于硼酸硼水的SFP混凝土结构的不同位置处的混凝土降解程度。使用不同的硼酸浓度,裂纹孔和溶液流速进行多达100年的模拟。将混凝土汽缸浸入硼酸溶液中几个月,并根据时间的函数评价混凝土圆筒中的矿物学变化和硼酸渗透。将硼酸溶液的混凝土浸出深度与测定的硼酸渗透深度进行比较。

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