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CEMENTITIOUS SYSTEMS FOR ENCAPSULATION OF INTERMEDIATE LEVEL WASTE

机译:用于封装中间水平废物的水泥系统

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Encapsulation in cement is the favoured method in the UK for disposal of intermediate and low level radioactive wastes. It is usual to use composite cement systems incorporating blast furnace slag (BFS) or pulverised fuel ash (PFA) as these offer several advantages over Portland cement, notably a lower heat of hydration. The use of these mineral additions utilises a waste product which would itself need a disposal route and, because of the decreased amount of Portland cement used, provides a reduction in cost and energy consumption. Cementitious systems have many attributes which make them suitable for encapsulation and immobilisation, including: 1. Inexpensive and readily available 2. Assist immobilisation of radionuclides by: a) acting as a diffusion barrier b) providing sorption and reaction sites c) maintaining a high pH which in turn decreases radionuclide solubility 3. Provide radiation shielding which is not degraded by the radiation 4. Controllable permeation and diffusion characteristics over a wide range via selection of constituents and components. Where physical adsorption is a significant factor for immobilisation, the calcium silicate hydrate gel (C-S-H) formed on hydration of a Portland cement is advantageous as it has a high surface area and large micropore volume. Composite cements based on blast furnace slag will produce a higher proportion of C-S-H than ordinary Portland cement increasing the sorption capacity, and reducing the capillary porosity so that the diffusion resistance is increased.
机译:水泥中的封装是英国的有利方法,用于处置中间和低水平的放射性废物。它通常使用结合高炉矿渣(BFS)或粉煤灰(PFA)作为在波特兰水泥这些提供了多种优点,特别是一个降低水化热复合水泥系统。这些矿物添加的使用利用废物本身需要一个处置途径,并且由于所使用的波特兰水泥量减少,因此降低了成本和能耗。水泥体系有许多属性,这使得它们适合于包封和固定化,包括:1.便宜和容易获得2.协助放射性核素的固定化:1)充当扩散屏障b)提供吸附和反应位点c)保持高pH值这又减少了放射性核素溶解度3.提供辐射屏蔽,其不会通过辐射劣化。通过选择成分和组分,可控渗透和扩散特性。其中物理吸附是用于固定化一个显著因子,形成在波特兰水泥水化硅酸钙水合物凝胶(C-S-H)是有利的,因为它具有高的表面面积和大的微孔容积。基于高炉炉渣的复合水泥将产生比普通波特兰水泥的C-S-H比例增加,增加吸附容量,并降低毛细孔孔隙率,使扩散耐孔隙增加。

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