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基于聚二甘醇碳酸烯丙酯(CR-39)的肢体剂量计用于中子照射的可行性研究。

Feasibility study of extremity dosemeter based on polyallyldiglycolcarbonate (CR-39) for neutron exposure.

作者信息

Chau Q, Bruguier P

机构信息

Institute for Radiological Protection and Nuclear Safety, BP 17, 92262 Fontenay-aux-Roses, France.

出版信息

Radiat Prot Dosimetry. 2007;126(1-4):528-31. doi: 10.1093/rpd/ncm106. Epub 2007 May 14.

Abstract

In nuclear facilities, some activities such as reprocessing, recycling and production of bare fuel rods expose the workers to mixed neutron-photon fields. For several workplaces, particularly in glove boxes, some workers expose their hands to mixed fields. The mastery of the photon extremity dosimetry is relatively good, whereas the neutron dosimetry still raises difficulties. In this context, the Institute for Radiological Protection and Nuclear Safety (IRSN) has proposed a study on a passive neutron extremity dosemeter based on chemically etched CR-39 (PADC: polyallyldiglycolcarbonate), named PN-3, already used in routine practice for whole body dosimetry. This dosemeter is a chip of plastic sensitive to recoil protons. The chemical etching process amplifies the size of the impact. The reading system for tracks counting is composed of a microscope, a video camera and an image analyser. This system is combined with the dose evaluation algorithm. The performance of the dosemeter PN-3 has been largely studied and proved by several laboratories in terms of passive individual neutron dosemeter which is used in routine production by different companies. This study focuses on the sensitivity of the extremity dosemeter, as well as its performance in the function of the level of the neutron energy. The dosemeter was exposed to monoenergetic neutron fields in laboratory conditions and to mixed fields in glove boxes at workplaces.

摘要

在核设施中,一些活动,如后处理、再循环和裸燃料棒的生产,会使工作人员暴露于中子 - 光子混合场中。在几个工作场所,特别是在手套箱中,一些工作人员会使他们的手部暴露于混合场中。对光子肢体剂量测定的掌握相对较好,而中子剂量测定仍然存在困难。在此背景下,辐射防护与核安全研究所(IRSN)提议开展一项关于基于化学蚀刻CR - 39(PADC:聚烯丙基二甘醇碳酸酯)的被动式中子肢体剂量计的研究,该剂量计名为PN - 3,已在全身剂量测定的常规实践中使用。这种剂量计是一种对反冲质子敏感的塑料芯片。化学蚀刻过程会放大撞击的尺寸。用于径迹计数的读取系统由一台显微镜、一台摄像机和一个图像分析仪组成。该系统与剂量评估算法相结合。剂量计PN - 3的性能已经在很大程度上由几个实验室针对不同公司在常规生产中使用的被动式个体中子剂量计进行了研究和验证。本研究聚焦于肢体剂量计的灵敏度,以及其在中子能量水平函数方面的性能。该剂量计在实验室条件下暴露于单能中子场,并在工作场所的手套箱中暴露于混合场。

相似文献

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