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Examination of chemical and physical effects on sump screen clogging of containment materials used in Korean plants

机译:检查化学和物理效应对韩国工厂使用的密闭材料的油底壳筛网堵塞的影响

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In this study, we have investigated the chemical and physical effects on the mechanism of sump screen clogging of containment materials that are used in most Korean nuclear power plants, such as N-102, N-108 as coating materials, NUKON as insulating materials, and CLP and SSLP as pipe materials. The experimental conditions for dissolution were pH = 8.0 at 88℃, and those for precipitation were pH = 8.5 at 60℃. The concentration of both dissolved and precipitated species were evaluated by using an ICP-AES and a particle size analyzer, respectively. From the obtained dissolution/precipitation data, we derived a unique two-step mechanism for the sump screen clogging process. In the first step, the screen was sparsely covered with needle-shaped silicon fiber debris that formed from the insulating materials; in the second step, it was finally clogged with a few micrometer-sized metal hydroxide precipitate particles (predominantly calcium hydroxide) that were generated from the dissolved metal ions. Hence, it can be concluded that the silicon fibers deployed for the insulating materials should be replaced with alternative materials that generate no needle-shaped debris after breakage, and the gypsum component in the coating should be reduced as much as possible.
机译:在这项研究中,我们研究了化学和物理作用对韩国大多数核电站使用的安全壳材料的油底壳筛网堵塞机理的影响,例如N-102,N-108作为涂层材料,NUKON作为绝缘材料,以及CLP和SSLP作为管道材料。溶出度的实验条件是在88℃下pH = 8.0,沉淀的条件是在60℃下pH = 8.5。分别使用ICP-AES和粒度分析仪评估溶解和沉淀物质的浓度。从获得的溶解/沉淀数据中,我们得出了污水坑筛网堵塞过程的独特两步机制。第一步,用绝缘材料形成的针状硅纤维碎片稀疏地覆盖屏幕。在第二步中,最后用一些微米大小的金属氢氧化物沉淀颗粒(主要是氢氧化钙)堵塞,这些颗粒是由溶解的金属离子产生的。因此,可以得出结论,用于绝缘材料的硅纤维应替换为在断裂后不产生针状碎屑的替代材料,并且应尽可能减少涂层中的石膏成分。

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