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Dry storage of spent nuclear fuel and high active waste in Germany—Current situation and technical aspects on inventories integrity for a prolonged storage time

机译:德国的乏核燃料和高活性废物的干式存储—延长存储时间的库存完整性的现状和技术方面

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Licenses for the storage of spent nuclear fuel (SNF) and vitrified highly active waste?in casks under dry conditions are limited to 40 years and have to be renewed for prolonged storage periods. If such a license renewal has to be expected since as in accordance with the new site selection procedure a final repository for spent fuel in Germany will not be available before the year 2050. For transport and possible unloading and loading in new casks for final storage, the integrity and the maintenance of the geometry of the cask's inventory is essential because the SNF rod cladding and the cladding of the vitrified highly active waste are stipulated as a barrier in the storage concept. For SNF, the cladding integrity is ensured currently by limiting the hoop stress and hoop strain as well as the maximum temperature to certain values for a 40-year storage period. For a prolonged storage period, other cladding degradation mechanisms such as inner and outer oxide layer formation, hydrogen pick up, irradiation damages in cladding material crystal structure, helium production from alpha decay, and long-term fission gas release may become leading effects driving degradation mechanisms that have to be discussed.
机译:在干燥条件下将废核燃料(SNF)和玻璃化的高活性废物储存在木桶中的许可证限制为40年,并且必须续签以延长储存期限。如果根据新的选址程序,如果需要续签此类许可证,则将在2050年之前在德国不提供乏燃料的最终储存库。对于运输以及可能的新桶装卸工作,以进行最终存储,桶的库存的完整性和几何形状的维护至关重要,因为SNF棒覆层和玻璃化的高活性废物覆层被规定为存储概念的障碍。对于SNF,目前可以通过将环向应力和环向应变以及最高温度限制在一定值(可保存40年)来确保包层完整性。对于延长的存储时间,其他包层降解机制,例如内部和外部氧化物层的形成,氢的吸收,包层材料晶体结构的辐照损伤,α衰变产生的氦气以及长期裂变气体的释放,可能成为驱动降解的主要作用需要讨论的机制。

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