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Effect of gamma irradiation on Portland cement: Hydrogen evolution and radiation resistance

机译:γ辐照对波特兰水泥的影响:氢气进化和辐射抗性

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Cementitious materials are widely applied as a matrix for the immobilization of low- and intermediate level radioactive waste. The use of these materials for high-level waste localization requires knowledge of their properties at high irradiation doses. We have studied the gas evolution and changes in the mechanical strength, composition, and structure of ordinary Portland cement (OPC) upon its irradiation up to absorbed doses of 100 MGy. The decomposition of water present in the cement is accompanied by hydrogen evolution. No oxygen formation was detected. The hydrogen accumulation is described by an exponential equation; the limiting gas concentration reached is approximately 2.8 L per 1 kg of cement. The mechanical strength up to absorbed doses of tens of megagrays varies insignificantly. Irradiation with accelerated (8 MeV) electrons exerts virtually the same effect as does 7-irradiation to the same absorbed dose. The structure, composition, and morphology of cement samples remain virtually unchanged up to high absorbed doses. (C) 2021 Elsevier Ltd. All rights reserved.
机译:水泥材料被广泛应用于用于固定低和中间水平放射性废物的基质。这些材料用于高级废物定位需要在高辐射剂量下了解它们的性质。我们已经研究了普通波特兰水泥(OPC)的机械强度,组成和结构的变化,以吸收100毫米的吸收剂量。存在于水泥中存在的水的分解伴有氢气进化。没有检测到氧形成。氢积累由指数方程描述;达到的限制气体浓度为每1千克水泥约2.8升。达到吸收剂量的机械强度不显着各种各样的兆变化。加速(8MeV)电子照射几乎与7辐射到相同吸收剂量的实际效果几乎相同。水泥样品的结构,组合物和形态实际上保持高吸收剂量。 (c)2021 elestvier有限公司保留所有权利。

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