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Comprehensive study on the technical aspects of sampling transporting and measuring radon-in-water

机译:水中sampling采样运输和测量技术方面的综合研究

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摘要

The European Commission's Joint Research Centre organizes proficiency tests (PT) on radon-in-water measurements. In order to optimize sampling, transport and measurement methods many tests and small scale proficiency tests have been performed. The waters from natural springs, wells were sampled on-site in glass bottles then transported cooled to the JRC and collaborating laboratories. For the material characterization standard measurement methods based on gamma-ray spectrometry, emanometry and liquid scintillation counting were used. The influence of sampling, transport and sample handling on radon-loss was tested and quantified. It was observed that parameters like container material, filling height, storage temperature and handling can lead to substantial measurement bias due to radon-loss. This high risk for radon-loss from samples can potentially be a general radioprotection problem as doses to the public may be underestimated. Regular air and road transport can be considered adequate means of transport as they have little influence on radon-loss if a suitable glass sample container with flexible cap is used and that it is completely filled. On the basis of this work, modifications to the related standard as best practices are also proposed.
机译:欧盟委员会联合研究中心组织了对水中ra测量的能力测试(PT)。为了优化采样,运输和测量方法,已经进行了许多测试和小规模能力测试。天然泉水,水井在玻璃瓶中现场采样,然后冷却后运至JRC和合作实验室。对于基于γ射线光谱法,辐射测定法和液体闪烁计数法的材料表征标准测量方法。测试并量化了采样,运输和样品处理对ra损失的影响。据观察,由于ra损失,诸如容器材料,填充高度,存储温度和处理之类的参数可能导致相当大的测量偏差。样品中ra损失的高风险可能是普遍的放射防护问题,因为对公众的剂量可能被低估了。如果使用合适的带有挠性盖的玻璃样品容器并且完全充满,则常规的航空和公路运输可以被视为适当的运输方式,因为它们对ra损失几乎没有影响。在这项工作的基础上,还提出了对相关标准的修改,以作为最佳实践。

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