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GAS MIGRATION IN LOW-AND INTERMEDIATE-LEVEL WASTE (LILW) DISPOSAL FACILITY IN KOREA

机译:韩国中低级废物处置中的气体迁移

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The first low- and intermediate-level waste (LILW) disposal facility is under construction in saturated granite in Korea. The safety assessment report (SAR) identified that different gases, such as hydrogen, carbon dioxide, and methane are generated at the disposal facility due to the corrosion of metal wastes and steel drum, and microbial degradation of organic matters. Reinforced concrete plays a role as an engineered barrier at the disposal facility, so its properties with regard to gas migration were evaluated in laboratory-scale experiments. Then modeling of gas migration was carried out to evaluate gas pressure build-up in the disposal facility. The gas entry pressure and relative gas permeability of the concrete was determined to be 0.97±0.15 bar, and the relative gas permeability decreased exponentially with increasing water content. The results of the modeling showed that most of hydrogen gas was dissolved in groundwater and did not significantly influence pressure build-up inside the disposal facility based on the reference case of gas generation.
机译:韩国第一个低层和中层废物(LILW)处置设施正在建设中,该花岗岩位于饱和花岗岩中。安全评估报告(SAR)确定,由于金属废物和钢桶的腐蚀以及有机物的微生物降解,在处置设施中会产生不同的气体,例如氢气,二氧化碳和甲烷。钢筋混凝土在处理设施中起着工程隔离层的作用,因此在实验室规模的实验中评估了其与气体迁移有关的特性。然后,对气体迁移进行了建模,以评估处置设施中的气体压力累积。确定混凝土的气体入口压力和相对气体渗透率为0.97±0.15 bar,并且相对气体渗透率随含水量的增加呈指数下降。建模结果表明,根据生成气体的参考情况,大多数氢气溶解在地下水中,并且不会显着影响处置设施内部的压力积累。

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