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使用环境伽马射线和氡探测器测定钋-218和铅-214的带电部分。

Determining the charged fractions of 218Po and 214Pb using an environmental gamma-ray and Rn detector.

作者信息

Maiello M L, Harley N H

机构信息

Environmental Measurements Laboratory, U.S. Department of Energy, New York, NY 10014-3621.

出版信息

Health Phys. 1989 Jul;57(1):51-9. doi: 10.1097/00004032-198907000-00007.

DOI:10.1097/00004032-198907000-00007
PMID:2745097
Abstract

The rate of 218Po and 214Pb atoms collected electrostatically inside an environmental gamma-ray and 222Rn detector (EGARD) was measured. These measurements were used to directly infer the charged fraction of 218Po and to calculate the charged fraction of 214Pb. Thirty-two percent of the 218Po was collected electrostatically using approximately -1500 V on a 2.54 cm diameter Mylar covered disc inside a vented A1 EGARD of 1 L volume. About 91% of the 214Pb is collected electrostatically under the same conditions. The measurements were performed in a calibrated 222Rn test chamber at the Environmental Measurements Laboratory (EML) using the Thomas alpha-counting method with 222Rn concentrations averaging about 4300 Bq m-3. The atomic collection rates were used with other measured quantities to calculate the thermoluminescent dosimeter (TLD) signal acquired from EGARD for exposure to 1 Bq m-3 of 222Rn. The calculations account for 222Rn progeny collection using a Teflon electret and alpha and beta detection using TLDs inside EGARD. The measured quantities include the energies of 218Po and 214Po alpha-particles degraded by passage through the 25 microns thick electret. The TLD responses to these alpha- and beta-particles with an average energy approaching that obtained from the combined spectra of 214Pb and 214Bi were also measured. The calculated calibration factor is within 30% of the value obtained by exposing EGARD to a known concentration of 222Rn. This result supports our charged fraction estimates for 218Po and 214Pb.

摘要

测量了在环境伽马射线和222Rn探测器(EGARD)内部通过静电收集的218Po和214Pb原子的速率。这些测量用于直接推断218Po的带电分数,并计算214Pb的带电分数。在一个容积为1L的通风A1型EGARD内部,在直径2.54cm的聚酯薄膜覆盖圆盘上施加约-1500V电压,通过静电收集了32%的218Po。在相同条件下,约91%的214Pb通过静电被收集。测量是在环境测量实验室(EML)的一个经过校准的222Rn测试室内进行的,采用托马斯α计数法,222Rn浓度平均约为4300Bq m-3。原子收集速率与其他测量量一起用于计算EGARD在暴露于1Bq m-3的222Rn时获得的热释光剂量计(TLD)信号。计算考虑了使用聚四氟乙烯驻极体收集222Rn子体,以及在EGARD内部使用TLD进行α和β探测。测量量包括218Po和214Po的α粒子通过25微米厚驻极体时能量的衰减。还测量了TLD对这些α和β粒子的响应,其平均能量接近从214Pb和214Bi的组合光谱获得的能量。计算得到的校准因子与通过将EGARD暴露于已知浓度的222Rn所获得的值相差在30%以内。这一结果支持了我们对218Po和214Pb带电分数的估计。

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