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环境中220Rn子体的累积测量

INTEGRATING MEASUREMENT OF 220Rn PROGENY IN THE ENVIRONMENT

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【作者】 陈勇程建平郭秋菊孙建永卓维海

【Author】 Chen Yong Cheng Jianping(Department of Engineering Physics, Tsinghua University, Beijing, 100084)Guo Qiuju Sun Jianyong(Department of Technical Physics, Peking University, Beijing, 100871) Zhuo Weihai(Department of Nuclear Engineering ,Graduate S

【机构】 清华大学工程物理系北京大学技术物理系日本名古屋大学工学部 北京100084北京100871名古屋4648603

【摘要】 本文介绍了一种以评价暴露量为目的的2 2 2 Rn、2 2 0 Rn子体累积测量仪。该测量仪使用固体径迹片CR 3 9为探测元件 ,用小型静音泵进行滤膜采样 ,之后蚀刻、读数 ,通过径迹密度分别求算2 2 2 Rn、2 2 0 Rn平衡当量浓度 (EECRn 、EECTn)。在采样时间为 2 4h ,采样流速为 0 .8L/min的条件下 ,EECRn 和EECTn的探测下限分别为 0 .5 7Bq·m- 3和 0 .0 7Bq·m- 3。最后介绍了使用该测量仪于 2 0 0 1年春在广东省珠海市进行环境2 2 2 Rn、2 2 0 Rn子体的测量结果

【Abstract】 For the purpose of evaluating the exposure due to inhalation of 220 Rn and its progeny, a new method of integrating monitor of 222 Rn/ 220 Rn progeny was developed and introduced in detail in this paper. The progeny of 222 Rn and 220 Rn in air are collected on the surface of a membrane filter through a micro pump. Based on the track etching technique(CR 39), the equilibrium equivalent concentrations of 222 Rn and 220 Rn can be calculated. The lower detection limits for EEC Rn  and EEC Tn  are 0.57 Bq·m -3 and 0.07 Bq·m -3 respectively when sampling time is 24 hours at a stable flow rate of 0.8 L/min. Furthermore, rather high 222 Rn and 220 Rn progeny concentrations was observed in Zhuhai city during a small survey with the newly developed monitor. (

【基金】 国家自然科学基金资助课题 (项目号 :10 75 0 0 7)
  • 【文献出处】 辐射防护 ,Radialization Protection , 编辑部邮箱 ,2002年03期
  • 【分类号】X837
  • 【被引频次】12
  • 【下载频次】160
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