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Behaviour of IPG waste forms bearing BaSO_4 as the dominant sludge constituent generated from the treatment of water used for cooling the stricken power reactors

机译:IPG废物形式的行为,其中BaSO_4为主要污泥成分,其是通过处理用于冷却动力堆的水而产生的

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The great amount of water used for cooling the stricken power reactors at Fukushima Dai-ichi following the earthquake and tsunami of 11 March 2011 has resulted in accumulation of cooling water so-called the remaining water in some buildings. As the cooling water is subsequently contaminated by fission products (FPs) and some other radioactive substances, it is necessary to decontaminate this 'cooling water' to reduce the volume of liquid radioactive waste and to reuse it again for cooling the affected reactors. Some methods are applied to remove the radioactive substances from the cooling water. However, after treatments of water, there arises a secondary radioactive waste, the sludge. Steps are now taken to immobilize this sludge. In this paper, BaSO_4, as one of main constituents of the sludge, was chosen as an immobilizing target substance. The appropriate manufacturing condition of glass waste form for loading the sludge (BaSO_4) was studied and the chemical durability was evaluated by measuring the dissolution rate. For this experiment, the iron phosphate glass (IPG), which is known to possess a large loading capacity for a variety of chemical substances, was employed as the glass medium. Based on experimental results, it is evident that BaSO_4 can be loaded into the IPG medium when it possesses the appropriate composition and melting temperature. During loading, BaSO_4 converted into BaO, acting as a network modifier, which leads to enhanced stability of IPG.
机译:在2011年3月11日地震和海啸之后,用于冷却福岛第一核电站反应堆的大量水已导致一些建筑物中积聚了冷却水,即所谓的剩余水。由于冷却水随后会被裂变产物(FPs)和某些其他放射性物质污染,因此有必要对这种“冷却水”进行去污染,以减少液态放射性废物的体积,并将其再次用于冷却受影响的反应堆。采取了一些方法从冷却水中去除放射性物质。但是,在水处理后,会产生二次放射性废物,即污泥。现在已采取步骤固定该污泥。在本文中,BaSO_4作为污泥的主要成分之一,被选作固定化目标物质。研究了用于装载污泥(BaSO_4)的玻璃废料形式的合适制造条件,并通过测量溶解速率评估了化学耐久性。在本实验中,使用磷酸铁玻璃(IPG)作为玻璃介质,该玻璃已知具有对多种化学物质的大负载能力。根据实验结果,很明显,BaSO_4具有合适的成分和熔化温度时,可以将其装载到IPG介质中。在加载期间,BaSO_4转换为BaO,用作网络修改器,从而提高了IPG的稳定性。

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