Radiation Applications Safety Division, Atomic Energy Regulatory Board, Anushaktinagar-400094, Mumbai, India.
Radiat Prot Dosimetry. 2024 Jul 17;200(11-12):1167-1172. doi: 10.1093/rpd/ncae020.
There has been an increase in the use of high energy photon beam for container scanners in many countries for multi purposes such as detecting high atomic number materials which might be nuclear materials, drugs, high explosive materials and other contrabands etc. High energy photon beams generally 6 and 9 MV can be used for scanning such materials. However, it is important to ensure that radiation level beyond the container scanner installation is within the permissible dose limit specified by the national competent authority for the protection of public and radiation workers. In this paper, challenges in the biological shielding during the installation of high energy X-ray system for scanning vehicles containing suspected materials are discussed. The purpose of the present study is to develop a methodology for shielding design and evaluation for container scanner installations. The basic concept pertaining to shielding evaluation of radiotherapy installations provided in National Council on Radiation Protection and Measurements (NCRP)/International Atomic Energy Agency (IAEA) reports are referred, and appropriately used to calculate optimized shielding thicknesses requirements for container scanner installation. Workload is estimated based on number of containers scanned, machine ON time and dose rate at 1 m. The shielding evaluation includes use of beam stopper in the primary beam, scattering by heterogeneous metallic scrap materials or any other suspected materials contained in the vehicle and their impact on the thickness of shielding walls. A model lay out plan to be used for installation of container scanner is developed. A methodology for shielding evaluation for various protective walls and ceiling of this model is also discussed. The study provides basic requirement for designing a structural room for installing 9MV container scanner from radiological safety view point.
许多国家为了多种目的,如检测可能是核材料、毒品、高爆炸材料和其他违禁品等高原子序数材料,在容器扫描仪中越来越多地使用高能光子束。一般可以使用 6 和 9MV 的高能光子束来扫描这些材料。然而,必须确保容器扫描仪安装处之外的辐射水平在国家主管当局为保护公众和辐射工作人员所规定的可允许剂量限值之内。本文讨论了在安装用于扫描含有可疑材料的车辆的高能 X 射线系统期间在生物屏蔽方面所面临的挑战。本研究的目的是开发一种用于容器扫描仪安装的屏蔽设计和评估方法。参考了美国国家辐射防护和测量委员会(NCRP)/国际原子能机构(IAEA)报告中有关放射治疗设备屏蔽评估的基本概念,并适当用于计算容器扫描仪安装所需的优化屏蔽厚度要求。工作量根据扫描的容器数量、机器开启时间和 1 米处的剂量率进行估算。屏蔽评估包括在主射束中使用束流阻挡器、散射由车辆中包含的异种金属废料或任何其他可疑材料引起的散射,以及它们对屏蔽壁厚度的影响。开发了一个用于安装容器扫描仪的模型布局计划。还讨论了这种模型的各种防护墙和天花板的屏蔽评估方法。本研究从放射防护安全角度为设计用于安装 9MV 容器扫描仪的结构室提供了基本要求。