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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry >Radioanalytical investigations of uranium concentrations in natural spring, mineral, spa and drinking waters in Hungary
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Radioanalytical investigations of uranium concentrations in natural spring, mineral, spa and drinking waters in Hungary

机译:匈牙利天然泉水,矿泉水,温泉和饮用水中铀浓度的放射分析研究

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摘要

Within this work, the activity concentrations of uranium isotopes (234U, 235U, and 238U) were analyzed in some of the popular and regularly consumed Hungarian mineral-, spring-, therapeutic waters and tap waters. Samples were selected randomly and were taken from different regions of Hungary (Balaton Upland, Bükk Mountain, Somogy Hills, Mezőföld, and Lake Hévíz). Concentration (mBq L−1) of 234U, 235U, and 238U in the waters varied from 1.1 to 685.2, from <0.3 to 7.9, and from 0.8 to 231.6 respectively. In general, the highest uranium concentrations were measured in spring waters, while the lowest were found in tap waters. In most cases radioactive disequilibrium was observed between uranium isotopes (234U and 238U). The activity ratio between 234U and 238U varies from 0.57 to 4.97. The calculated doses for the analyzed samples of spring water are in the range 0.07–32.39 μSv year−1 with an average 4.32 μSv year−1. This is well below the 100 μSv year−1 reference level of the committed effective dose recommended by WHO and the EU Council. The other naturally occurring alpha emitting radionuclides (226Ra and 210Po) will be analyzed later to complete the dose assessment. This study provides preliminary information for consumers and authorities about their internal radiological exposure risk due to annual intake of uranium isotopes via water consumption.
机译:在这项工作中,分析了一些流行的铀同位素( 234 U, 235 U和 238 U)的活性浓度。定期饮用匈牙利的矿泉水,泉水,治疗水和自来水。从匈牙利的不同地区(巴拉顿高地,比克山,索莫吉山,梅泽弗尔德和赫维兹湖)随机抽取样品。水中 234 U, 235 U和 238 U的浓度(mBq L −1 ) 1.1到685.2,分别从<0.3到7.9和0.8到231.6。通常,在泉水中测得的铀浓度最高,而在自来水中测得的铀浓度最低。在大多数情况下,在铀同位素( 234 U和 238 U)之间观察到放射性不平衡。 234 U和 238 U之间的活性比在0.57至4.97之间变化。所分析的泉水样品的计算剂量范围为0.07–32.39μSv年 -1 ,平均为4.32μSv年 -1 。这远低于世界卫生组织和欧盟理事会建议的承诺有效剂量的100μSv年 −1 参考水平。稍后将分析其他自然产生的发射α的放射性核素( 226 Ra和 210 Po)以完成剂量评估。这项研究为消费者和当局提供了有关由于每年通过消耗水摄入铀同位素而造成的内部放射风险的初步信息。

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