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In situ characterization using natural radio-tracers in a submarine freshwater spring, Kiveri, Greece

机译:在潜水艇淡水春天,Kiveri,希腊使用自然放射线轨迹的原位特征

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A medium resolution underwater gamma ray spectrometer was deployed in the submarine groundwater spring of Anavalos and was combined with conductivity and temperature sensors for continuous measurements of natural radioactivity, salinity and water temperature, respectively. The activity concentrations of radon progenies varied from (5-40) kBq m- 3, exhibited reverse dependence with salinity and were found above the guideline proposed by Environmental Protection Agency (11 kBq m-3). Their ratio was above unity indicating radon gas escape to the atmosphere. Time-series of the activity concentration together with their ratios were provided enabling the system configuration for long term monitoring applications. The in-situ method proved to be an effective tool to study the radioactivity levels of the spring and the groundwater - seawater interaction process. Furthermore, the proposed tool provides cost-effective measurements in terms of real-time and long-term requirements and, it is characterized by flexibility in terms of sensor integration in different platforms to perform submarine groundwater studies in a temporal and spatial manner.
机译:中散水下伽马射线光谱仪部署在Anavalos的潜艇地下水弹簧中,并与电导率和温度传感器合并,分别连续测量天然放射性,盐度和水温。从(5-40)kBQ m-3的氡后代的活动浓度不同,与盐度相反,并在环境保护署(11 kBQ m-3)提出的指南上方。它们的比例高于指示氡气逸出到大气的统一。随着长期监测应用的系统配置,提供了活动浓度的时间序列与它们的比例一起实现了系统配置。原位方法被证明是研究弹簧和地下水 - 海水相互作用过程的放射性水平的有效工具。此外,所提出的工具在实时和长期要求方面提供了经济高效的测量,并且其特征在于在不同平台中的传感器集成方面的灵活性,以便以时间和空间方式进行潜艇地下水研究。

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