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Methodology developed to make the Quebec indoor radon potential map

机译:开发了制作魁北克室内ra气势图的方法

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摘要

This paper presents a relevant approach to predict the indoor radon potential based on the combination of the radiogeochemical data and the indoor radon measurements in the Quebec province territory (Canada). The Quebec ministry of health asked for such a map to identify the radon-prone areas to manage the risk for the population related to indoor radon exposure. Three radiogeochemical criteria including (1) equivalent uranium (eU) concentration from airborne surface gamma-ray surveys, (2) uranium concentration measurements in sediments, (3) bedrock and surficial geology were combined with 3082 basement radon concentration measurements to identify the radon-prone areas. It was shown that it is possible to determine thresholds for the three criteria that implied statistically significant different levels of radon potential using Kruskal-Wallis one way analyses of variance by ranks. The three discretized radiogeochemical datasets were combined into a total predicted radon potential that sampled 98% of the studied area. The combination process was also based on Kruskal-Wallis one way ANOVA. Four statistically significant different predicted radon potential levels were created: low, medium, high and very high. Respectively 10 and 13% of the dwellings exceed the Canadian radon guideline of 200 Bq/m~3 in low and medium predicted radon potentials. These proportions rise up to 22 and 45% respectively for high and very high predicted radon potentials. This predictive map of indoor radon potential based on the radiogeochemical data was validated using a map of confirmed radon exposure in homes based on the basement radon measurements. It was shown that the map of predicted radon potential based on the radiogeochemical data was reliable to identify radon-prone areas even in zones where no indoor radon measurement exists.
机译:本文结合放射性地球化学数据和魁北克省境内(加拿大)的室内ra测量值,提出了一种预测室内ra潜力的相关方法。魁北克卫生部要求提供这样的地图,以识别容易发生ra气的区域,以管理与室内indoor气暴露相关的人群的风险。三种放射性地球化学标准包括:(1)机载表面伽马射线勘测中的等效铀(eU)浓度,(2)沉积物中的铀浓度测量,(3)基岩和表层地质与3082地下室ra浓度测量结合以识别--易发地区。结果表明,使用Kruskal-Wallis一种按等级进行方差分析的方法,可以确定三个标准的阈值,这些标准隐含着统计上显着不同的ra势水平。将三个离散的放射性地球化学数据集合并为一个总预测ra气势,该that气势采样了研究区域的98%。组合过程也基于Kruskal-Wallis的一种方差分析。创建了四个统计学上显着不同的预测potential势水平:低,中,高和非常高。在低和中度预测的potential势中,分别有10%和13%的房屋超过了加拿大ra准则200 Bq / m〜3。对于高和非常高的预测ra势,这些比例分别上升到22和45%。使用基于地下ra测量值的已确认房屋中was暴露图,可以验证基于放射性地球化学数据的室内indoor势预测图。结果表明,基于放射性地球化学数据的预测ra势图即使在不存在室内ra测量区域的情况下,也能可靠地识别出容易发生ra的区域。

著录项

  • 来源
    《Science of the total environment》 |2014年第1期|372-380|共9页
  • 作者单位

    Institut national de la recherche scientifique, Eau Tern Environnement Research Centre (ETE-INRS), 490 de la Couronne, G1K9A9 Quebec, Canada;

    Institut national de la recherche scientifique, Eau Tern Environnement Research Centre (ETE-INRS), 490 de la Couronne, G1K9A9 Quebec, Canada;

    Institut national de santi publique du Quebec (INSPQ), 945 avenue Wolfe, G1V5B3 Quebec, Canada;

    Agence de la santi et des services sociaux des Laurentides, 1000 rue Labelle, J7Z5 N6 Saint-Jerome, Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Radon mapping; Geology; Airborne survey; ANOVA; Uranium; Sediment;

    机译:on映射地质学;机载调查;方差分析;铀;沉淀;

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