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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Effect of alpha irradiation on UO2 surface reactivity in aqueous media
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Effect of alpha irradiation on UO2 surface reactivity in aqueous media

机译:α辐照对水性介质中UO2表面反应性的影响

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The option of direct disposal of spent nuclear fuel in a deep geological formation raises the need to investigate the long-term behavior of the UO2 matrix in aqueous media subjected to alpha-beta-gamma radiation. The beta-gamma emitters account for most of the activity of spent fuel at the moment it is removed from the reactor, but diminish within a millennial time frame by over three orders of magnitude to less than the long-term activity. The latter persists over much longer time periods and must therefore be taken into account over a geological disposal time scale. Leaching experiments with solution renewal were carried out on UO2 pellets doped with alpha emitters (Pu-238 and Pu-239) to quantify the impact of alpha irradiation on UO2 matrix alteration. Three batches of doped UO2 pellets with different alpha flux levels (3.30 x 10(4), 3.30 x 10(5), and 3.2 x 10(6) alphacm(-2) s(-1)) were studied. The results obtained in aerated and deaerated media immediately after sample annealing or interim storage in air provide a better understanding of the UO2 matrix alteration mechanisms under alpha irradiation.Interim storage in air Of UO2 pellets doped with alpha emitters results in variations of the UO2 surface reactivity, which depends on the alpha particle flux at the interface and on the interim storage duration. The variation in the surface reactivity and the greater uranium release following interim storage cannot be attributed to the effect of alpha radiolysis in aerated media since the uranium release tends toward the same value after several leaching cycles for the doped UO2 pellet batches and spent fuel. Oxygen diffusion enhanced by alpha irradiation of the extreme surface layer and/or radiolysis of the air could account for the oxidation of the surface UO2 to UO2+x. However, leaching experiments performed in deaerated media after annealing the samples and preleaching the surface suggest that alpha radiolysis does indeed affect the dissolution, which varies with the flux at the UO2/water interface.
机译:在深部地质层中直接处置乏核燃料的选择提出了研究在受到α-β-γ辐射的水性介质中UO2基质的长期行为的需求。 β-γ排放源占乏燃料从反应堆中移出时的大部分活动,但在千年期框架内减少了三个数量级以上,低于长期活动。后者会持续更长的时间,因此必须在地质处置时间范围内予以考虑。在掺有α发射体(Pu-238和Pu-239)的UO2颗粒上进行了溶液更新的浸出实验,以量化α辐射对UO2基质变化的影响。研究了三批具有不同alpha通量水平(3.30 x 10(4),3.30 x 10(5)和3.2 x 10(6)alphacm(-2)s(-1)的UO2颗粒。样品退火或在空气中临时存储后立即在充气和脱气的介质中获得的结果可更好地了解α辐照下的UO2基质变化机理。在空气中临时存储掺有α发射体的UO2颗粒会导致UO2表面反应性发生变化,这取决于界面处的alpha粒子通量和临时存储时间。临时存储后表面反应性的变化和铀释放量的增加不能归因于加气介质中α辐射的影响,因为掺杂的UO2颗粒批次和乏燃料经过几个浸出循环后,铀释放量趋于相同。极端表面层的α辐射和/或空气的辐射分解增强了氧气的扩散,可以解释表面UO2氧化为UO2 + x的原因。但是,在对样品进行退火并预先浸出表面后,在脱气的介质中进行的浸出实验表明,α辐射确实确实影响了溶出度,溶出度随UO2 /水界面处的通量而变化。

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