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Shielding properties of protective thin film coatings and blended concrete compositions for high level waste storage packages

机译:用于高级废物存储包装的保护性薄膜涂料和混合混凝土组合物的屏蔽性能

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sVarious thin film coatings have been proposed to protect stainless steel high level waste (HLW) containers from premature failure due to localized corrosion, hydrogen embrittlement, and mechanical wear. These coatings include TiN, ZrO2, MoS2, TiO2, and Al2O3, to be deposited either in multiple layers or as a thicker, single-layer composite. Linear attenuation coefficients of these materials have been simulated using MicroShield and measured experimentally for various photon energies. Additionally, spent fuel casks with overpacks made of two different types of concrete were simulated to compare exposure rate at the cask surface. In the energy range that is significant for high level waste storage all coating materials possess very similar attenuation behavior. A specialty concrete, containing magnetite (Fe3O4) and lead oxide (PbO), reduces the exposure rate at the outer surface of the overpack by several orders of magnitude. The higher-Z elements not present in ordinary concrete greatly increase attenuation of intermediate-energy gammas (0.4-1.0 MeV). The thin film coatings do not affect the shielding capabilities of the HLW packaging, as their total proposed thickness is nearly three orders of magnitude less than the mean free path (MFP) of the primary photons of interest. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经提出了各种薄膜涂层,以保护不锈钢高放废物(HLW)容器免受由于局部腐蚀,氢脆和机械磨损而引起的过早失效。这些涂层包括TiN,ZrO2,MoS2,TiO2和Al2O3,可以多层沉积或以较厚的单层复合材料沉积。这些材料的线性衰减系数已使用MicroShield进行了仿真,并针对各种光子能量进行了实验测量。此外,模拟了用两种不同类型的混凝土制成的带有外包装的乏燃料桶,以比较桶表面的暴露率。在对于高水平废物存储而言非常重要的能量范围内,所有涂料都具有非常相似的衰减行为。包含磁铁矿(Fe3O4)和氧化铅(PbO)的特种混凝土将外包装外表面的暴露速率降低了几个数量级。普通混凝土中不存在的较高Z元素会大大增加中能伽玛(0.4-1.0 MeV)的衰减。薄膜涂层不会影响HLW包装的屏蔽能力,因为它们建议的总厚度比感兴趣的主要光子的平均自由程(MFP)小近三个数量级。 (C)2015 Elsevier Ltd.保留所有权利。

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