首页> 外文会议>ASME international conference on environmental remediation and radioactive waste management >BUILDING FLEXIBILITY INTO THE DESIGN OF A PILOT PLANT FOR THE IMMOBILISATION OF PU CONTAINING RESIDUES AND WASTES
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BUILDING FLEXIBILITY INTO THE DESIGN OF A PILOT PLANT FOR THE IMMOBILISATION OF PU CONTAINING RESIDUES AND WASTES

机译:将灵活性构建为试点植物的设计,以防化含PU的残留物和废物

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NNL and ANSTO on behalf of Sellafield Ltd have developed a process for the immobilisation of a range of Pu containing wastes and residues. Following the inactive demonstration of the technology the project is now focusing on the design of an active pilot plant capable of validating the technology and ultimately immobilising a waste inventory containing around 100kg plutonium. The diverse wastes from which it is uneconomic to recover Pu, require a flexible process with a wide product envelope capable of producing a wasteform suitable for disposal in a UK repository. Ceramics, glass ceramics and metal encapsulated wasteforms can be delivered by the process line which incorporates size reduction and heat treatment techniques with the aim of feeding a hot isostatic pressing process designed to deliver the highly durable wasteforms. Following a demonstration of feasibility, flowsheet development is progressing to support the design which has the aim of a fully flexible facility based in NNL's Central Laboratory on the Sellafield site. Optimisation of the size reduction, mixing and blending operations is being carried out using UO_2 as a surrogate for PuO_2. This work is supporting the potential of using an enhanced glass ceramic formulation in place of the full ceramic with the aim of simplifying glove box operations. Heat treatment and subsequent HIPing strategies are being explored in order to eliminate any carbon from the feeds without increasing the valence state of the uranium present in some of the inventory which can result in an unwanted increase in wasteform volumes. The HIP and ancillary systems are being specifically designed to meet the requirements of the Sellafield site and within the constraints of the NNL Central Laboratory. The HIP is being configured to produce consolidated product cans consistent with the requirements of ongoing storage and disposal. With the aim of one cycle per day, the facility will deliver its mission of immobilising the identified waste and residues inventory within 3 years. During that period it will also be used to demonstrate the potential of this technology to deliver the immobilisation of a proportion of the UK plutonium stockpile that may not be suitable for use as MOx fuel should that decision be taken.
机译:NNL和ANSTO代表Sellafield Ltd开发了一种固定一系列含有废物和残留物的Pu的方法。在不活跃的技术演示之后,该项目现在专注于设计一个活跃的中试工厂,该工厂能够验证该技术并最终固定约100kg waste的废物库存。从中回收Pu并不经济,因此需要多种多样的废物,这需要灵活的过程,且产品范围广,能够产生适合在英国处置场处置的废物形式。陶瓷,玻璃陶瓷和金属封装的废料可通过生产线交付,该生产线结合了尺寸减小和热处理技术,旨在提供热等静压工艺,以交付高度耐用的废料。在论证了可行性之后,正在开发流程图以支持该设计,该设计的目标是在Sellafield站点的NNL中央实验室中建立一个完全灵活的设施。正在使用UO_2作为PuO_2的替代品来进行尺寸减小,混合和共混操作的优化。这项工作正在支持使用增强的玻璃陶瓷配方代替全陶瓷的潜力,以简化手套箱的操作。正在探索热处理和随后的HIPing策略,以消除进料中的任何碳而不增加某些库存中铀的化合价状态,这可能导致废料体积的不希望有的增加。 HIP和辅助系统是专门为满足Sellafield站点的要求而设计的,并且处于NNL中央实验室的限制之内。将HIP配置为生产符合持续存储和处置要求的合并产品罐。该设施的目标是每天一个周期,其任务是在3年内固定已识别的废物和残留物库存。在此期间,它还将被用于证明这项技术的潜力,如果需要做出决定,该技术可以将一定比例的英国p储备固定化,而这些英国may储备可能不适合用作MOx燃料。

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