福岛核电站受污染碎石的限制使用研究(2)回收材料参考放射性浓度的验证

Kazuji Miwa, T. Shimada, S. Takeda
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引用次数: 3

摘要

东京电力公司一直计划将福岛第一核电站(1F)事故产生的部分碎石回收利用,并仅在1F站点内进行限制再利用。为确保限制再用的安全性,我们结合1F场址辐射控制的现状,开发了一种新的限制再用参考浓度评价方法。在本研究中,为了验证道路回收材料的参考放射性浓度(1.0×105 Bq/kg)和混凝土建筑基础的参考放射性浓度(1.6×105 Bq/kg),我们评估了(1)额外的职业剂量,(2)场地边界的年剂量,(3)海洋出口地下水中的放射性浓度。(1)、(2)、(3)应分别低于2 mSv/y、1 mSv/y和1 Bq/L。因此,额外职业剂量计算为1.3毫西弗/年。在距离道路超过25 m的情况下,边界处年剂量为1 mSv/y。在距离建筑物5 m以上的情况下,计算出的出海口地下水中134Cs和137Cs的浓度均在1 Bq/L以下。计算出的参考放射性浓度在1F站点内的受限重复使用中得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on restricted use of contaminated rubble on Fukushima Daiichi NPS site (2) Validation of reference radiocesium concentration for recycling materials
Tokyo Electric Power Company has been planning that a part of rubbles arising from the accident of the Fukushima Daiichi NPS (1F) will be recycled and applied in a restricted reuse only within 1F site. For ensuring the safety of the restricted reuse, we have been developing a new methodology for evaluation of reference concentration for the restricted reuse, considering current situation of radiation control at the 1F site. In this study, in order to validate the reference radiocesium concentrations of recycling material used for the road (1.0×105 Bq/kg) and the base of a concrete building (1.6×105 Bq/kg), which have been calculated for the restricted reuse of contaminated rubbles, we evaluated (1) additional occupational dose, (2) annual dose at the site boundary, (3) radiocesium concentration in groundwater at the outlet to the ocean. (1), (2) and (3) are should be below 2 mSv/y, 1 mSv/y and 1 Bq/L, respectively. As a result, additional occupational dose was calculated as 1.3 mSv/y. Annual dose at the boundary was 1 mSv/y with condition of more than the distance of 25 m from the road. Calculated radiocesium of 134Cs and 137Cs concentrations in the groundwater at the outlet to the ocean were the below the 1 Bq/L with condition of distance of more than 5 m from the building. The calculated reference radiocesium concentrations were validated for the restricted reuse within the 1F site.
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