期刊文献+

流气延时法测量氡气土浓度的研究 被引量:9

Study on Radon and Thoron Concentration Measurement in Their Mixed Atmosphere by Air-flow and Time-delay Method
下载PDF
导出
摘要 文章涉及同时测定氡气土浓度的方法———流气延时法。该方法采用两套闪烁室测量装置和1台由50mmPVC U排水管和50mmPVC U接头制成的总体积为24L的延时装置。当氡气土混合气体以恒定流率3L·min-1流经测量系统时,延时装置后的闪烁室测量装置测定气土室中氡的参考浓度,延时装置前的闪烁测量装置经扣除气土的贡献后可测定气土室中气土的参考浓度。流气闪烁法测氡气土浓度的刻度因子的不确定度小于5.0%。 One of the key techniques of building a calibrating and experimental device (thoron chamber) for thoron and it’s progenies monitors is the determination method of thoron and thoron daughters concentrations, especially in radon and thoron mixed (atmosphere.) A air-flow and time-delay method for the simultaneous measurement of (radon) and thoron reference concentrations in thoron chamber was developed in Radon Laboratory of Nanhua University. The monitoring device mainly consists of two scintillation cell measuring equipments and a time-delay equipment with the volume of 24 L. When the radon and thoron mixed gas flows through the monitoring device with the flow rate of 3 L·min^(-1), the scintillation cell monitoring equipment after the time-delay (equipment) measures radon reference concentration in thoron chamber, and the another scintillation cell monitoring equipment before the time-delay equipment can measure thoron reference concentration in thoron chamber after deducting the contribution of (radon.) The uncertainties of the calibration factors of the scintillation cells for radon and thoron concentration measurement by air-flow method are less than 5.0%.
出处 《原子能科学技术》 EI CAS CSCD 北大核心 2005年第3期278-281,共4页 Atomic Energy Science and Technology
基金 国家自然科学基金资助项目(10075083)
关键词 氢浓度 测量装置 延时装置 同时测定 测量系统 混合气体 不确定度 闪烁室 PVC 排水管 thoron chamber air-flow and time-delay method determination reference concentration
  • 相关文献

参考文献9

  • 1肖德涛,潘自强,凌球,董柳灿.被动式累积测■方法研究[J].原子能科学技术,2001,35(4):325-330. 被引量:8
  • 2肖德涛,潘自强,凌球,董柳灿,梁干庄.用于被动积分测^(220)Rn剂量计刻度的简易^(220)Rn室[J].原子能科学技术,2002,36(1):89-92. 被引量:6
  • 3Steinhausler F, Hofmann W, Letmer H. Thoron Exposure of Man: A Negligible Issue? [J]. Radiat Prot Dosim, 1994, 56(1/4):127-131.
  • 4Nuccetelli C, Bochicchio. The Thoron Issue: Monitoring Activities, Measuring Techniques and Dose Coversion Faetors[J]. Radiat Prot Dosim,1998, 78(1) :127-131.
  • 5Masahiro Doi, Fujimoto K, Kobayashi S, et al.Spatial Distribution of Thoron and Radon Concentrations in the Indoor Air of a Traditional Jap anese Wooden House[J]. Health Phys, 1994, 66(1) :43-49.
  • 6Zhuo Weihai, Takao Iida. An Instrument for Measuring Equilibrium-equivalent ^222Rn and ^220Rn Concentration With Etched Track Detectors[J]. Health Phys, 1999, 77(5):584.
  • 7Peaeson MD, Spangler RR. Calibration of α-track Monitors for Measurement of Thoron(^220Rn)[J]. Health Phys, 1991, 60(5):697-701.
  • 8丘寿康.^(220)Rn测量仪器的刻度问题[J].核技术,2003,26(7):561-563. 被引量:13
  • 9李先杰.建立测量标准技术报告:氡及其氡子体浓度测量仪器检定装置[R].衡阳:南华大学,2001..

二级参考文献13

  • 1吴增汉,曾晋祥.广东省居民室内外空气中氡(气土)及其子体α潜能浓度水平及居民受照剂量[J].辐射防护,1989,9(6):454-459. 被引量:17
  • 2田志恒 左富琪 等.驻极体收集积分测氡法:CNIC-00574[M].北京:原子能出版社,1991..
  • 3UNSCAR.UNSCAR1993年报告-电离辐射源与效应[M].北京:原子能出版社,1995..
  • 4肖德涛 潘自强 等.全国天然辐射引起公众照射及其控制研讨会论文集[M].北京,2000..
  • 5周剑良 邱小平 于涛 等.环境Rn/Tn的测量与评价国际学术研讨会论文汇编[J].湖南衡阳,2002,5:143-48.
  • 6潘自强.有必要注意■及其子体对居民产生的照射[J].辐射防护,1997,17(3):188-191. 被引量:12
  • 7Keane A T, Brewster D IL Health Physics, 1983, 45(3):801-805.
  • 8Kuchta D R, Rundo J, Holtzman R B. Biological and Environmental Effects of low-level Radiation, Vol. II,Proc. Symp, Chicago (Vienna: IAEA), Nov 1975.183--196.
  • 9潘自强 白光.公众所受天然辐射照射的控制.天然辐射引起公众照射及其控制研讨会论文集[M].香港,1999,12..
  • 10Tian Zhiheng,J Radiol Prot,1994年,14卷,3期,241页

共引文献19

同被引文献48

引证文献9

二级引证文献38

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部