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利用核光谱技术对波兰外喀尔巴阡地区地下水中的天然放射性进行研究。

Natural radioactivity in underground water from the Outer Carpathians in Poland with the use of nuclear spectrometry techniques.

作者信息

Walencik A, Kozłowska B, Dorda J, Zipper W

机构信息

University of Silesia, Institute of Physics, Department of Nuclear Physics and Its Applications, Katowice, Poland.

出版信息

Appl Radiat Isot. 2010 Apr-May;68(4-5):839-43. doi: 10.1016/j.apradiso.2009.09.056. Epub 2009 Sep 23.

Abstract

The investigations of natural radioactivity in underground mineral water and spring water in health resorts in the Outer Carpathians were performed. Samples from 40 water springs were collected 3-4 times over a period of 10 years (1997-2007). In order to obtain necessary data, two different nuclear spectrometry techniques were applied: WinSpectral alphabeta 1414 liquid scintillation counter from Wallac and alpha-spectrometer 7401 VR from Canberra-Packard, USA with the silicon surface barrier detector. The activity concentrations of (222)Rn in the investigated samples varied from below 1 to 50 Bq/l. For radium isotopes the concentrations were in a range from below 10 to 490 mBq/l for (226)Ra and from 29 to 397 mBq/l for (228)Ra. The highest concentrations for both radium isotopes were obtained for medicinal water Zuber III from Krynica spa. The activity concentrations for uranium isotopes varied from below 0.5 to 16 mBq/l for (238)U and from below 0.5 to 162 mBq/l for (234)U with the highest values obtained for water Zuber IV. The highest annual effective dose arising from mainly radium isotopes was obtained for Zuber III water and was equal to 75 microSv/yr. Additionally, the annual effective doses due to (222)Rn consumed with water were also estimated. The isotopic ratios between isotopes originating from the same decay chain ((234)U/(238)U, (226)Ra/(238)U) and from different radioactive decay chains ((226)Ra/(228)Ra) were determined. The correlations between different isotopes were presented.

摘要

对喀尔巴阡山脉外疗养胜地的地下矿泉水和泉水进行了天然放射性调查。在10年(1997 - 2007年)期间,从40个泉水处采集了样本,共采集3 - 4次。为了获取必要数据,应用了两种不同的核光谱技术:来自Wallac的WinSpectral alphabeta 1414液体闪烁计数器以及来自美国堪培拉 - 帕卡德公司的配备硅表面势垒探测器的7401 VR型α光谱仪。被调查样本中(222)Rn的活度浓度在1 Bq/l以下至50 Bq/l之间变化。对于镭同位素,(226)Ra的浓度范围为10 mBq/l以下至490 mBq/l,(228)Ra的浓度范围为29 mBq/l至397 mBq/l。两种镭同位素的最高浓度均出现在克里尼察温泉疗养地的祖伯三号药用水中。铀同位素的活度浓度,(238)U在0.5 mBq/l以下至16 mBq/l之间,(234)U在0.5 mBq/l以下至162 mBq/l之间,祖伯四号水的浓度最高。祖伯三号水主要由镭同位素产生的最高年有效剂量为75 μSv/年。此外,还估算了因饮用含(222)Rn的水而产生的年有效剂量。确定了源自同一衰变链((234)U/(238)U、(226)Ra/(238)U)以及源自不同放射性衰变链((226)Ra/(228)Ra)的同位素之间的同位素比率。展示了不同同位素之间的相关性。

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