Potential increased radiological risk in cargo scanning activity

IF 1.4 4区 医学 Q4 ENVIRONMENTAL SCIENCES
S.Q. Pelegrineli, A.X. Silva, A. Santos, W.S.S. Filho, W. Pereira, R. Stenders, E. Andrade
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引用次数: 1

Abstract

The image-based cargo inspection systems are generally intended to identify illegal practices. However, imaging processes from the scanning of motorized containers have been used for increasing industrial safety. This is made possible by the application of high energy particle linear accelerators (linac). Measurements of both the environmental equivalent dose rate (δH*(10), and the integrated environmental equivalent dose (H*(10) were performed. The estimation of δH*(10) and H*(10) in the scanning channel, including the driver's cab of the truck transporting the container, is critical. The aim of this study is to check the radiological safety for occasional users (drivers) by comparing the levels of δH*(10) and H*(10) with those adopted for public exposure. The study was experimentally conducted in a cargo and container inspection facility that uses a linac operating at the maximum energy of 4.5 MeV. During the in-situ measurements a SpiR-ID identifier detector Model F 8929 MGP manufactured by Mirion Technologies was used. The measurements in the driver's cab suggest that the procedure can be considered safe. However, a fast transient of δH*(10) was identified recording raised values (peaks) around 210x the threshold for public exposures in the first 9 s of each scanning procedure.
货物扫描活动可能增加辐射风险
以图像为基础的货物检查系统一般是用来识别非法行为。然而,从扫描的机动容器成像过程已用于提高工业安全。这是通过应用高能粒子线性加速器(linac)实现的。测量了环境等效剂量率δH*(10)和综合环境等效剂量(H*(10))。在包括运输集装箱的卡车驾驶室在内的扫描通道中,δH*(10)和H*(10)的估计是至关重要的。本研究的目的是通过比较δH*(10)和H*(10)的水平与公共暴露的水平来检查偶尔使用者(司机)的辐射安全性。这项研究是在一个货物和集装箱检验设施中进行的实验,该设施使用的直线加速器的最大能量为4.5兆电子伏。在现场测量中,使用了Mirion Technologies公司生产的F 8929 MGP型SpiR-ID标识探测器。司机驾驶室的测量结果表明,这个过程可以被认为是安全的。然而,δH*(10)的快速瞬变被确定,在每次扫描过程的前9秒内,δH*(10)的升高值(峰值)约为公众暴露阈值的210倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Radioprotection
Radioprotection ENVIRONMENTAL SCIENCES-PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
CiteScore
3.30
自引率
54.50%
发文量
35
审稿时长
>12 weeks
期刊介绍: Radioprotection publishes articles on all aspects of radiological protection, including non-ionising as well as ionising radiations. Fields of interest range from research, development and theory to operational matters, education and training. The very wide spectrum of its topics includes (theoretical and practical aspects): dosimetry, instrument development, specialized measuring techniques, epidemiology, biological effects (in vivo and in vitro) and risk and environmental impact assessments.
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