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Radio active waste management-underground repository method

机译:无线电活跃废物管理 - 地下存储库方法

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Finding a solution for nuclear waste is a key issue, not only for the protection of the environment but also for the future of the nuclear industry. Ten years from now, when the first decisions for the replacement of existing nuclear power plants will have to be made, The general public will require to know the solution for nuclear waste before accepting new nuclear plants. In other words, an acceptable solution for the management of nuclear waste is a prerequisite for a renewal of nuclear power. Most existing wastes are being stored in safe conditions waiting for permanent solution, with some exceptions in the former Eastern Bloc. Temporary surface or shallow storage is a well known technique widely used all over the world. A significant research effort has been made by the author of this paper in the direction of underground repository. The underground repository appears to be a good solution. Trying to transform dangerous long lived radionuclides into less harmful short lived or stable elements is a logical idea. It is indeed possible to incinerate or transmute heavy atoms of long lived elements in fast breeder reactors or even in pressurised or boiling water reactors. There are also new types of reactors which could be used, namely accelerator driven systems. High level and long lived wastes (spent fuel and vitrified waste) contain a mixture of high activity (heat producing) short lived nuclides and low activity long lived alpha emitting nuclides. To avoid any alteration due to temperature of the engineered or geological barrier surrounding the waste underground, it is necessary to store the packages on the surface for several decades (50 years or more) to allow a sufficient temperature decrease before disposing of them underground. In all cases, surface (or shallow) storage is needed as a temporary solution. This paper gives a detailed and comprehensive view of the Deep Geological Repository, providing a pragmatic picture of the means to make this method, a universally acceptable one.
机译:寻找核废料的解决方案是一个关键问题,不仅用于保护环境,而且为核工业的未来。从现在开始十年,当必须制定替代现有核电站的第一个决定时,公众将要求在接受新的核植物之前了解核垃圾的解决方案。换句话说,核废料管理的可接受解决方案是核电续期的先决条件。大多数现有废物正在存放在等待永久解决方案的安全条件下,前者在东部Bloc中有一些例外。临时表面或浅储存是一种众所周知的技术,广泛用于世界各地。本文在地下存储库方向上取得了一项重大研究努力。地下存储库似乎是一个很好的解决方案。试图将危险的长寿放射性核素变成了较少有害的短暂或稳定的元素是一个逻辑的想法。确实可以在快速育种反应器中焚烧或透射长寿命元素的重物,或者甚至在加压或沸水反应器中。还有新型的反应器可以使用,即加速器驱动系统。高水平和长期的浪费(废燃料和玻璃化废物)含有高活性(发热)短寿命的核素和低活性长期α发射核素的混合物。为了避免由于在地下围绕废物的工程化或地质屏障的温度而改变,必须将封装存放在表面上几十年(50岁以上),以便在处理地下处理之前足够的温度降低。在所有情况下,需要表面(或浅)储存作为临时解决方案。本文提供了对深层地质存储库的详细和全面的视图,提供了一种制作这种方法的手段的语用图片,这是一个普遍接受的手段。

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