硼硅玻璃基体吸收剂量的计算及其模拟辐照

IF 2.8 4区 生物学 3 Biotech Pub Date : 2022-09-02 DOI:10.26565/2312-4334-2022-3-16
V. Morgunov, Serhii Sayenko, V. Shkuropatenko, Y. Svitlychnyi, O. Bereznyak, S. Lytovchenko, V. Chyshkala
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引用次数: 1

摘要

乌克兰核电厂的放射性液体废物管理状况的特点是缺乏从处理到获得适合进一步长期储存或处置的最终产品的完整技术周期。因此,底部残渣(BR)的储存罐(扎波罗热和南乌克兰核电站)已满65-75%,扎波罗热核电站放置熔盐的资源(92.7%)已接近枯竭。因此,发展核电厂轻水固化技术和材料是迫切需要的,其目的是确保轻水固化处理成符合集中贮存设施处置验收标准的固体状态。玻璃化是一种有效的LRW固化方法。玻璃化的主要优点是,在玻璃化过程中,废物的体积减少了几倍,这节省了昂贵的存储空间[2,3]。本工作的目的是计算含底部残留物的硼硅酸盐玻璃基质在贮存300年以上积累的吸收剂量,并研究模拟x射线照射对其物理力学性能的影响。
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Calculation of the Absorbed Dose by a Borosilicate Glass Matrix and its Simulated Irradiation
The state of liquid radioactive wastes (LRW) management at Ukrainian Nuclear Power Plants (NPPs) is characterized by the lack of a completed technological cycle from processing to obtaining the final product suitable for further long-term storage or disposal. As a result, the storage tanks for bottoms residue (BR) are 65-75% full (Zaporozhye and South-Ukrainian NPPs), and the resource for placing molten salt at Zaporizhzhya NPP (92.7%) is close to exhaustion [1]. Therefore, the development of technologies and materials for NPP LRW solidification is an urgent need and aims to ensure the processing of LRW to a solid state that will meet the acceptance criteria for disposal in centralized storage facilities. One of the effective methods of LRW solidification is their vitrification. The main advantage of vitrification is that during the vitrification process the volume of waste is reduced by several times and this saves expensive storage space [2, 3]. The purpose of this work is to calculate the absorbed dose that borosilicate glass matrices with included bottoms residue will accumulate over 300 years of storage, and to study the effect of simulated X-ray irradiation on their physical and mechanical properties.
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来源期刊
3 Biotech
3 Biotech BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
自引率
0.00%
发文量
314
期刊介绍: 3 Biotech publishes the results of the latest research related to the study and application of biotechnology to: - Medicine and Biomedical Sciences - Agriculture - The Environment The focus on these three technology sectors recognizes that complete Biotechnology applications often require a combination of techniques. 3 Biotech not only presents the latest developments in biotechnology but also addresses the problems and benefits of integrating a variety of techniques for a particular application. 3 Biotech will appeal to scientists and engineers in both academia and industry focused on the safe and efficient application of Biotechnology to Medicine, Agriculture and the Environment.
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