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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >U.S. EPA response to the Fukushima Daiichi nuclear power plant accident
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U.S. EPA response to the Fukushima Daiichi nuclear power plant accident

机译:美国环保署应对福岛第一核电站核电站事故

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During the spring of 2011, the U.S. Environmental Protection Agency (EPA) used its national radiation monitoring and sampling system, RadNet, to detect, identify, and inform the public about radioactive material in the United States resulting from Japan's Fukushima Daiichi Nuclear Power Plant release. The RadNet system monitors ambient air, drinking water, precipitation, and pasteurized milk for radionuclides. To supplement its existing stationary (fixed) continuous air monitoring system, EPA deployed additional air monitors to Saipan, Guam, and locations in the western United States. The Agency also accelerated the regular quarterly sampling of milk and drinking water and collected an additional round of samples. For two months, staff located at EPA's Headquarters Emergency Operations Center, west coast regional offices, and National Air and Radiation Environmental Lab worked seven days a week to handle the increased radiochemical sample analysis from air filters, precipitation, drinking water, and milk; provide interagency scientific input; and answer press and public inquiries. EPA's data was consistent with what was expected from the Fukushima Daiichi Nuclear Power Plant release. The levels of radioactivity were so low that the readings from the near-real-time RadNet air monitors stayed within normal background ranges. Detailed sample analyses were needed to identify the radionuclides associated with the release. Starting at the end of April and continuing through May 2011, levels of radioactive material decreased as expected.
机译:在2011年春,美国环境保护署国家使用辐射监测和采样系统,RadNet,来检测、识别和告知公众放射性物质在美国造成日本福岛第一核电站发电厂释放。环境空气、饮用水、降水、和放射性核素的巴氏杀菌奶。现有固定(固定)连续的空气监控系统,EPA部署额外的空气监测到塞班岛、关岛和位置美国西部。加速了定期的季度采样牛奶和饮用水和收集额外的样品。员工位于EPA总部的紧急情况操作中心,西海岸地区办事处,和国家空气和辐射环境实验室一个星期工作七天来处理增加的放射化学样品分析从空气过滤器,降水、饮用水、牛奶;跨部门科学输入;和公共调查。从福岛第一核电站与预期核电站释放。放射性是如此之低,阅读近实时RadNet空气监测在正常背景范围。分析需要确定放射性核素与释放有关。从4月底开始和继续通过2011年5月,水平的放射性物质按预期下降。

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