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连续空气监测应用中影响阿尔法粒子检测的因素。

Factors that affect alpha particle detection in continuous air monitor applications.

作者信息

Moore M E, McFarland A R, Rodgers J C

机构信息

Department of Mechanical Engineering, Texas A&M University, College Station 77843.

出版信息

Health Phys. 1993 Jul;65(1):69-81. doi: 10.1097/00004032-199307000-00008.

Abstract

An experimental study was conducted to characterize the full-width half-maximum values, peak shapes, and peak shifts of the energy spectra from alpha emitters in the forms of particulate matter on sampling filters and electro-deposited plated sources. Monodisperse 1.0-microns anhydrous uranium acetate aerosol particles were collected on seven types of sampling filters. Full-width half-maximum values at atmospheric pressure varied from 373 keV for a 3-microns pore size Fluoropore filter to 584 keV for a glass fiber filter. Monodisperse uranium acetate aerosols from 1.2-8.1 microns were collected on Millipore 1.2-microns pore size membrane filters to examine the self-absorption effect. Under vacuum, the corresponding full-width half-maximum values ranged from 241-1,011 keV. Successively heavier mass loadings of monodisperse 1.8-microns uranium acetate particles from 13.7-127 micrograms cm-2 caused the values to increase from 420 to 580 keV. With an electroplated 23.9-mm-diameter 239Pu source and a 25.4-mm detector, the distance between source and detector was incrementally increased from 3.2 to 6.4 mm--a range of distances that is typical of those found in alpha continuous air monitors. At atmospheric pressure, the values increased from 280 to 330 keV and the detector efficiency decreased from 30.5% to 20.9%. Tests with various sizes of sources and detectors suggest that a continuous air monitor should be designed so that the two are of approximately equal size.

摘要

开展了一项实验研究,以表征采样滤膜上颗粒物形式的α发射体以及电沉积镀源的能谱的半高宽值、峰形和峰位移。在七种类型的采样滤膜上收集了单分散的1.0微米无水醋酸铀气溶胶颗粒。在大气压下,半高宽值从孔径为3微米的氟化物滤膜的373 keV到玻璃纤维滤膜的584 keV不等。在孔径为1.2微米的密理博膜滤器上收集了粒径为1.2 - 8.1微米的单分散醋酸铀气溶胶,以研究自吸收效应。在真空下,相应的半高宽值范围为241 - 1011 keV。单分散的1.8微米醋酸铀颗粒的质量负荷从13.7微克/平方厘米依次增加到127微克/平方厘米,导致该值从420 keV增加到580 keV。对于一个直径为23.9毫米的电镀239Pu源和一个25.4毫米的探测器,源与探测器之间的距离从3.2毫米逐渐增加到6.4毫米——这个距离范围是α连续空气监测仪中常见的。在大气压下,该值从280 keV增加到330 keV,探测器效率从30.5%降至20.9%。使用各种尺寸的源和探测器进行的测试表明,连续空气监测仪的设计应使两者尺寸大致相等。

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