期刊文献+

基于单小闪烁室延时法绝对测量^(222)Rn/^(220)Rn方案验证 被引量:2

Research on Absolute Mensurement of ^(222)Rn\^(220)Rn Concentrations Based on a Single Small Scintillation Cell and Delay-time Method
下载PDF
导出
摘要 文章提出了单小闪烁室采用延时法对222Rn/220Rn进行绝对测量的方案,并给出了使用222Rn对这种方案进行验证的条件,设计了验证实验。实验结果表明,延时后小闪烁室的浓度与球形闪烁室作为参考值的偏差在-2.9%^+3.4%之间。从小闪烁室的浓度随时间的波动来看,延时后最佳测量氡的时间段是10~45分钟。实验证明采用单小闪烁室延时法对222Rn/220Rn浓度进行绝对测量是可行的。 A single small scintillation with delay-time method is used to measure radon and thoron concentrations in their mixed atmosphere-of absolute measurement of radon and thoron concentrations was discussed. The conditions of using radon to test this menthod was described and a experiment was designed to prove it. Compare to the reference number, Its margin of error was -2. 9%- +3. 4%, and the best time of the measurement of radon was 10-45 minutes. In conclusion, a single small scintillation cell could be used for absolute measurement radon and thoron concentrations.
出处 《核电子学与探测技术》 CAS CSCD 北大核心 2009年第2期340-343,共4页 Nuclear Electronics & Detection Technology
关键词 小闪烁室 222Rn/220Rn延时法 绝对测量 small scintillation cell, 222 Rn/220 Rn concentration, time-delay method, absolute measurement
  • 相关文献

参考文献6

  • 1.UNSCEAR 2000年报告书[R].,..
  • 2肖德涛,丘寿康,冒学勇,姜启轩.流气延时法测量氡气土浓度的研究[J].原子能科学技术,2005,39(3):278-281. 被引量:10
  • 3Bronisaw Machaj, Piotr Urbaflski, Jakub Bartak. Measurement of radon (^222 Rn) and thoron(^220Rn) concentration with a single scintillation cell [J].NUKLEONIKA, 2007,52.
  • 4李海亮,周剑良.绝对量^220Rn的小闪烁室的研制[D].南华大学硕士论文,2005.
  • 5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:14
  • 6田志恒.辐射剂量学[M].北京:原子能出版社,1990

二级参考文献12

  • 1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.
  • 2Keane A T, Brewster D IL Health Physics, 1983, 45(3):801-805.
  • 3Kuchta 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.
  • 4Steinhausler F, Hofmann W, Letmer H. Thoron Exposure of Man: A Negligible Issue? [J]. Radiat Prot Dosim, 1994, 56(1/4):127-131.
  • 5Nuccetelli C, Bochicchio. The Thoron Issue: Monitoring Activities, Measuring Techniques and Dose Coversion Faetors[J]. Radiat Prot Dosim,1998, 78(1) :127-131.
  • 6Masahiro 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.
  • 7Zhuo Weihai, Takao Iida. An Instrument for Measuring Equilibrium-equivalent ^222Rn and ^220Rn Concentration With Etched Track Detectors[J]. Health Phys, 1999, 77(5):584.
  • 8Peaeson MD, Spangler RR. Calibration of α-track Monitors for Measurement of Thoron(^220Rn)[J]. Health Phys, 1991, 60(5):697-701.
  • 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..
  • 10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

共引文献21

同被引文献12

引证文献2

二级引证文献5

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