Johnston Thomas P
*National Institute of Standards &8; Technology, 100 Bureau Drive, MS 6100, Gaithersburg, MD 20899-6100.
Health Phys. 2015 Feb;108(1 Suppl 1):S19-28. doi: 10.1097/HP.0000000000000207.
Performing health physics and radiation safety functions under a special nuclear material license and a research and test reactor license at a major government research and development laboratory encompasses many elements not encountered by industrial, general, or broad scope licenses. This article reviews elements of the health physics and radiation safety program at the NIST Center for Neutron Research, including the early history and discovery of the neutron, applications of neutron research, reactor overview, safety and security of radiation sources and radioactive material, and general health physics procedures. These comprise precautions and control of tritium, training program, neutron beam sample processing, laboratory audits, inventory and leak tests, meter calibration, repair and evaluation, radioactive waste management, and emergency response. In addition, the radiation monitoring systems will be reviewed including confinement building monitoring, ventilation filter radiation monitors, secondary coolant monitors, gaseous fission product monitors, gas monitors, ventilation tritium monitor, and the plant effluent monitor systems.
在一家主要的政府研发实验室,依据特殊核材料许可证和研究与试验反应堆许可证履行健康物理和辐射安全职能,涉及许多工业、通用或广泛范围许可证所未遇到的要素。本文回顾了美国国家标准与技术研究院中子研究中心健康物理和辐射安全计划的要素,包括中子的早期历史与发现、中子研究的应用、反应堆概述、辐射源和放射性物质的安全与安保,以及一般健康物理程序。这些包括氚的预防与控制、培训计划、中子束样品处理、实验室审核、库存与泄漏测试、仪表校准、维修与评估、放射性废物管理以及应急响应。此外,还将回顾辐射监测系统,包括限制区建筑物监测、通风过滤器辐射监测器、二次冷却剂监测器、气态裂变产物监测器、气体监测器、通风氚监测器以及工厂排放监测系统。