Kraus Terry, Foster Kevin
*Sandia National Laboratories, P.O. 5800, Mail Stop 0791, Albuquerque, NM 87185-0791; †Lawrence Livermore National Laboratory, P.O. Box 08, L-103, Livermore, CA 94551.
Health Phys. 2014 Aug;107(2):150-63. doi: 10.1097/HP.0000000000000086.
The radiological assessment of the nuclear fallout (i.e., fission and neutron-activation radionuclides) from a nuclear detonation is complicated by the large number of fallout radionuclides. This paper provides the initial isotopic source term inventory of the fallout from a uranium-fueled nuclear detonation and identifies the significant and insignificant radiological dose producing radionuclides over 11 dose integration time periods (time phases) of interest. A primary goal of this work is to produce a set of consistent, time phase-dependent lists of the top dose-producing radionuclides that can be used to prepare radiological assessment calculations and data products (e.g., maps of areas that exceed protective action guidelines) in support of public and worker protection decisions. The ranked lists of top dose-producing radionuclides enable assessors to perform atmospheric dispersion modeling and radiological dose assessment modeling more quickly by using relatively short lists of radionuclides without significantly compromising the accuracy of the modeling and the dose projections. This paper also provides a superset-list of the top dose-producing fallout radionuclides from a uranium-fueled nuclear detonation that can be used to perform radiological assessments over any desired time phase. Furthermore, this paper provides information that may be useful to monitoring and sampling and laboratory analysis personnel to help understand which radionuclides are of primary concern. Finally, this paper may be useful to public protection decision makers because it shows the importance of quickly initiating public protection actions to minimize the radiological dose from fallout.
核爆炸产生的核沉降物(即裂变和中子活化放射性核素)的放射学评估因沉降物放射性核素数量众多而变得复杂。本文提供了铀燃料核爆炸沉降物的初始同位素源项清单,并确定了在11个感兴趣的剂量积分时间段(时间阶段)内产生显著和不显著放射剂量的放射性核素。这项工作的一个主要目标是生成一组与时间阶段相关的、一致的产生最高剂量的放射性核素清单,可用于编制放射学评估计算和数据产品(例如,超过防护行动指南的区域地图),以支持公众和工作人员的防护决策。产生最高剂量的放射性核素的排名清单使评估人员能够通过使用相对较短的放射性核素清单更快地进行大气扩散建模和放射剂量评估建模,而不会显著影响建模的准确性和剂量预测。本文还提供了一份铀燃料核爆炸产生最高剂量的沉降物放射性核素的超集清单,可用于在任何所需的时间阶段进行放射学评估。此外,本文提供的信息可能对监测和采样以及实验室分析人员有用,有助于他们了解哪些放射性核素是主要关注对象。最后,本文可能对公众防护决策者有用,因为它表明了迅速启动公众防护行动以将沉降物的放射剂量降至最低的重要性。