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Enhancement of Zirconolite Dissolution Due to Water Radiolysis

机译:增强由于水辐射溶解引起的锆石溶解

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Zirconolite is a candidate host material for conditioning minor tri- and tetra-valent actinides arising from enhanced nuclear spent fuel reprocessing and partitioning, in the case of disposal of the nuclear waste. Its chemical durability has been studied here under charged particle-induced radiolysis (He~(2+) and proton external beams) to identify the possible effects of water radiolysis on the dissolution rates in pure water and to describe the alteration mechanisms. Two experimental geometries have been used in order to evaluate the influence of the following parameters: solid irradiation, water radiolysis. In the first geometry the beam gets through the sample before stopping at the surface/water interface. In the second one the beam stops before the surface/water interface. Results on the elemental releases due to the enhanced dissolution of the zirconolite surface during charged particle-induced irradiation of water are presented. Under radiolysis, an increase of one order of magnitude is observed in the Ti, Zr and Nd elemental releases. No difference in the total elemental releases can be noticed when the solid is also irradiated.
机译:锆醇是一种候选宿主材料,用于调节从增强的核废料再处理和分区产生的次要的三价阳光,在处理核废料的情况下。这里已经在带电粒子诱导的辐射(He〜(2+)和质子外梁)下进行了化学耐久性,以确定水辐射对纯水中溶出速率的可能影响,并描述改变机制。已经使用了两种实验几何形状,以评估以下参数的影响:固体辐射,水辐射。在第一个几何形状中,光束在停止在表面/水界面之前通过样品。在第二个中,光束在表面/水界面之前停止。提出了由于在带电粒子诱导的水中的锆石表面增强溶解导致的元素释放。在放射性分析下,在Ti,Zr和Nd元素释放中观察到一种级的增加。当固体也被照射时,可以注意到总元素释放的差异。

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