首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Deposition rate of supersaturated silicic acid on Na-type bentonite as a backfilled material in the geological disposal
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Deposition rate of supersaturated silicic acid on Na-type bentonite as a backfilled material in the geological disposal

机译:在地质处理中作为回填材料在Na型膨润土上的超饱和硅酸的沉积速率

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摘要

When constructing geological disposal systems for radioactive waste, saline groundwater, originating from fractured rock matrices surrounding disposal tunnels, may reduce bentonite swelling properties and accelerate radionuclide migration. In contrast, high alkaline groundwater, caused by the use of cementitious materials, induces supersaturated conditions with regard to silicic acid. The resulting deposition of silicic acid may decrease the hydraulic conductivity of flow paths. Therefore, this study experimentally examined the apparent deposition rate constant, k (m/s), by considering the supersaturated concentration of silicic acid and deep-underground temperatures (288-323 K). As a result, the apparent deposition rate constants, obtained experimentally, were not affected by an initial supersaturated concentration and were only slightly affected by temperature. We estimated the apparent activation energy at 8.9 kJ/mol. Furthermore, because the Damkohler number, described by the ratio between the apparent deposition rate constant and the groundwater flow rate, had a large value, exceeding 10(3), the deposition of supersaturated silicic acid may cause the narrowing flow paths. These results suggest that silicic acid deposition contributes to retardation effects via the decrease of the hydraulic conductivity in backfilled tunnels.
机译:在为放射性废物的地质处理系统构建地质处理系统时,盐水地下水源自处置隧道周围的裂缝岩石基质,可降低膨润土溶胀性能并加速放射性核素迁移。相反,由使用胶凝材料引起的高碱性地下水,在硅酸中诱导超饱和条件。得到的硅酸的沉积可以降低流动路径的液压导电性。因此,本研究通过考虑硅酸和深层温度的过饱和浓度(288-323k),通过实验研究表观沉积速率常数K(m / s)。结果,实验获得的表观沉积速率常数不受初始过饱和浓度的影响,并且仅受温度略微影响。我们估计了8.9 kJ / mol的明显激活能量。此外,因为由表观沉积速率常数和地下水流速之间的比率描述的达摩人数具有大值,所以超过10(3),所以过饱和硅酸的沉积可能导致变窄的流动路径。这些结果表明,硅酸沉积通过回填隧道中的液压导电性降低有助于延迟效应。

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