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意大利中部地区饮用水中天然放射性核素的测量及总剂量指示性评估

Natural radionuclides measurements and total dose indicative evaluation in drinking waters of an Italian central region.

作者信息

Borio Rita, Rongoni Alba, Saetta Daniela, Desideri Donatella, Meli Maria Assunta, Feduzi Laura

机构信息

Section of Medical Physics Environmental and Epidemiological Department of Chir., Radiol. Science Perugia University, Perugia, Italy.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2007 Sep;42(11):1631-7. doi: 10.1080/10934520701517903.

Abstract

A study of radioactivity content in drinking waters collected in some areas of geological interest in an Italian central region was performed to check the compliance with recent European regulations. Gross alpha and beta activities, 226Ra, 238U, 234U, 210Po and 3H concentrations were measured. Gross alpha and beta, 226Ra and 3H activities were determined using an ultra-low-level scintillation counter, 238U, 234U and 210Po by alpha spectrometry after radiochemical separation. Recommended WHO guideline activity concentrations for drinking water were exceeded in 6 cases for gross alpha activity and were not exceeded in any case for gross beta activity. Tritium concentration was always lower than MDA (6.75 Bq L(-1)); the concentrations (mBq L(-1)) of 226Ra, 238U, 234U and 210Po ranged from <1.80 to 23.00, from 1.20 to 140.00, from 1.60 to 120.00 and from 0.25 to 5.90, respectively. Due to the importance of the water in human diet, the doses were calculated for children and adults using the dose coefficient factors reported by EC Directive 96/29 EURATOM and annual water intake; all samples furnished a dose lower the reference level for drinking water (0.1 mSv y(-1)).

摘要

为检查是否符合最新的欧洲法规,对意大利中部地区一些具有地质研究价值的区域采集的饮用水中的放射性含量进行了一项研究。测量了总α和总β活度、镭 - 226、铀 - 238、铀 - 234、钋 - 210和氚的浓度。总α和总β、镭 - 226和氚的活度使用超低本底闪烁计数器测定,铀 - 238、铀 - 234和钋 - 210通过放射化学分离后用α能谱法测定。总α活度有6例超过了世界卫生组织推荐的饮用水指导活度浓度,总β活度在任何情况下均未超过。氚浓度始终低于检测限(6.75 Bq L⁻¹);镭 - 226、铀 - 238、铀 - 234和钋 - 210的浓度(mBq L⁻¹)分别在<1.80至23.00、1.20至140.00、1.60至120.00和0.25至5.90之间。由于水在人类饮食中的重要性,使用欧洲原子能共同体指令96/29报告的剂量系数因子和年饮水量计算了儿童和成人的剂量;所有样品的剂量均低于饮用水的参考水平(0.1 mSv y⁻¹)。

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