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A modelling approach to assess the environmental/radiological impact of C-14 release from radioactive waste repositories

机译:一种评估放射性废物库中C-14释放对环境/放射学影响的建模方法

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摘要

Assessments of the environmental impact of C-14 disposal often assume that C-14 is converted into gases that are able to migrate to the surface, where they pose a radiological risk. However, uncertainties, associated with the long-term release of C-14 from graphite and the evolution in the post-closure environment of a geological disposal facility (GDF), exist. In this paper, an integrated modelling framework has been developed to investigate these uncertainties. The modelling framework consists of a biogeochemical near field model which interfaces with a geosphere/biosphere model and it is verified by comparing the results to those obtained from other models. A sensitivity analysis discloses that a faster mid chain scission rate of stopped cellulose about four orders of magnitude assesses a twice higher effective dose. In another scenario, which is related to the control of microbial activity by pH and the availability of carbon dioxide to microbes, the effective dose is two orders of magnitude higher compared with a reference scenario. This modelling work illustrates also the importance of far field parameters, such as the rock permeability and the release area of gas pathway, to the assessment of effective dose.
机译:对C-14处置的环境影响的评估通常假定C-14被转换为能够迁移到地表的气体,从而构成放射风险。但是,存在与石墨中C-14的长期释放以及地质处置设施(GDF)的封闭后环境演变有关的不确定性。在本文中,已经开发了一个集成的建模框架来研究这些不确定性。该建模框架由与地球圈/生物圈模型对接的生物地球化学近场模型组成,并且通过将结果与从其他模型获得的结果进行比较来进行验证。敏感性分析表明,终止纤维素的中链断裂速度较快,约为四个数量级,可评估两倍的有效剂量。在另一种情况下,与通过pH控制微生物活性和二氧化碳对微生物的利用有关,有效剂量比参考情况高两个数量级。该建模工作还说明了远场参数(例如岩石渗透率和气路释放面积)对于评估有效剂量的重要性。

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