对消费级时态氡检测仪性能进行为期 291 天的评估。

IF 1 4区 医学 Q4 ENVIRONMENTAL SCIENCES
Health physics Pub Date : 2025-01-01 Epub Date: 2024-09-13 DOI:10.1097/HP.0000000000001858
Carly E Evans, Kimberlee J Kearfott
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引用次数: 0

摘要

摘要:对于私人住宅和工作场所的氡含量筛查和评估而言,经济实惠、准确可靠的时间测量设备是非常理想的。本研究在先前研究的基础上,通过对 RadonFTlab RadonEye 设备的多个样本与实验室级仪器 Saphymo AlphaGUARD 的多个样本进行比较,扩展了先前的研究。数据是在一栋有人居住的建筑物中通风条件较差的地下室空间收集的,历时 291 天。环境条件自然变化,氡源项和进入空间的氡量都发生了变化,接近通常的部署条件。计算了每个 RadonEye 与 AlphaGUARD 的 R 平方线性回归相关系数和相对灵敏度。还研究了总体的时间和昼夜变化。在整个部署期间,所有 RadonEyes 和 AlphaGUARD 的灵敏度均在 22% 以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 291-day Evaluation of the Performance of a Consumer-grade Temporal Radon Detector.

Abstract: Affordable, accurate, and robust temporal measurement devices are desirable for screening and assessment of radon levels in private homes and workplaces. This research expands upon prior research, using the RadonFTlab RadonEye device through a comparison of multiple samples of this instrument with a laboratory-grade instrument, the Saphymo AlphaGUARD, over a more extensive period than reported previously. Data were collected over 291 d in a poorly ventilated basement space in an occupied building. Environmental conditions varied naturally, changing both the radon source term and radon entry into the space approximating typically deployed conditions. The R-squared linear regression correlation coefficient and relative sensitivities of each RadonEye with the AlphaGUARD were computed. Overall temporal and diurnal variations were also studied. The sensitivities of all RadonEyes and the AlphaGUARD agreed to within 22% throughout the entire deployment period.

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来源期刊
Health physics
Health physics 医学-公共卫生、环境卫生与职业卫生
CiteScore
4.20
自引率
0.00%
发文量
324
审稿时长
3-8 weeks
期刊介绍: Health Physics, first published in 1958, provides the latest research to a wide variety of radiation safety professionals including health physicists, nuclear chemists, medical physicists, and radiation safety officers with interests in nuclear and radiation science. The Journal allows professionals in these and other disciplines in science and engineering to stay on the cutting edge of scientific and technological advances in the field of radiation safety. The Journal publishes original papers, technical notes, articles on advances in practical applications, editorials, and correspondence. Journal articles report on the latest findings in theoretical, practical, and applied disciplines of epidemiology and radiation effects, radiation biology and radiation science, radiation ecology, and related fields.
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