金属废弃物表征与管理路线分离技术研究

D. Mavrikis, A. Markopoulos, Elena Dalla, A. Ioannidou, A. Savidou
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摘要

充分的放射学表征对金属废物管理的优化是重要的。对于退役计划,目标是获得有关装置的放射学知识。这一阶段的表征可以通过以下方法进行:1)基于反应堆设计和中子通量的中子活化计算;2)剂量率测量;3)原位伽马能谱法;4)取样测定活化组分和污染组分的标度因子。在拆卸过程中,进行现场表征,对产生的废物进行分类和包装。然后,对这些包进行监控,以评估活动并确定管理路线。切割和去污技术的选择应以准确测定材料内部和/或表面污染的放射性核素为基础。重要的是要决定在哪些情况下去污是有效的,并根据废物是轻微活化还是受到污染,或两者兼而有之,选择适当的去污技术。Α基于伽马能谱测量和MCNPX蒙特卡罗模拟的结合,正在开发用于优化测定成分和金属废物的污染和活化的半经验技术。首先,该技术旨在减少与密度和活度分布相关的不确定性。材料内部和表面的特定活性可以通过使用所提出的非破坏性技术的测量结果,结合使用活化和/或污染的比例因子来确定。
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A Technique for Metallic Waste Characterization and Segregation in Management Routes
Adequate radiological characterization is important for optimization of metallic waste management. For decommissioning planning, the objective is to obtain a radiological understanding of the involved installation. The characterization at this stage could be carried out by means of: 1) neutron activation calculations based on reactor design and neutron flux; 2) dose rate measurements; 3) in-situ gamma spectrometry; 4) sampling for determination of the scaling factors in activated and contaminated components. During dismantling, in-situ characterization is carried out to classify and package the generated waste. Then, the packages are monitored for assessment of activity and determination of the management route.  The selection of cutting and decontamination techniques should be based on accurate determination of the radionuclides inside the material and/ or on the surface contamination. . It is important to decide in which cases the decontamination will be efficient as well as to select the appropriate decontamination techniques based on whether the waste is slightly activated or contaminated or both. Α Semi-empirical technique for optimization of determination of contamination and activation of components and metallic waste is under development based on combination of gamma spectrometry measurements and MCNPX Monte Carlo simulations. Firstly, the technique aims at reduction of the uncertainties related to the density and activity distribution. The specific activities inside and on the surface of the materials could be determined by using the measurement results of the proposed non-destructive technique in combination with the use of the scaling factors for activation and/ or contamination.
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