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Modeling a three-layer container based on halloysite nano-clay for radioactive waste disposal

机译:基于埃洛石纳米粘土的三层容器建模,用于放射性废物处理

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摘要

This work aims to modify the shielding properties of liquid radioactive waste (LRW) containers used in nuclear power plants (NPP) for cooling water treatments. The proposed modified container consists of three main layers: a stainless steel inner capsule, halloysite clay filler, and an outer cementation concrete layer. A Monte Carlo simulation was used to estimate the absorbed and equivalent doses (μSv) around the LRW container. The dose rate is affected by the thickness of the inner capsule as well as the halloysite filler. The results show that increasing capsule thickness by 0-3 cm reduces the equivalent dose rate by 82.89. Increasing filler thickness by 0-17 cm reduces the equivalent dose rate by 15.26. The proposed container has many other advantages. It can reduce radioactive waste by 99.85 and is not expensive - due to the low price of concrete and halloysite. As a result, it is a good candidate for use in the dry disposal of radioactive wastes.
机译:本研究旨在改变用于核电站(NPP)冷却水处理的液体放射性废物(LRW)容器的屏蔽性能。拟议的改性容器由三个主要层组成:不锈钢内胶囊、埃洛石粘土填料和外胶结混凝土层。使用蒙特卡罗模拟来估计 LRW 容器周围的吸收剂量和当量剂量 (μSv)。剂量率受内胶囊厚度以及埃洛石填料的影响。结果表明,胶囊厚度增加0-3 cm,等效剂量率降低82.89%。将填料厚度增加 0-17 cm,等效剂量率降低 15.26%。所提出的容器还有许多其他优点。由于混凝土和埃洛石价格低廉,它可以减少 99.85% 的放射性废物,而且价格不贵。因此,它非常适合用于放射性废物的干处理。

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