Samuels Caleigh, Leggett Rich
Environmental Sciences Division, Oak Ridge National Laboratory, Oak Ridge, TN, USA.
Int J Radiat Biol. 2023;99(12):1841-1852. doi: 10.1080/09553002.2023.2241896. Epub 2023 Aug 14.
The Rocky Flats (RF) Plant was a weapons manufacturing facility that operated from the early 1950s to 1989. Its primary missions were the production of plutonium (Pu) pits for thermonuclear weapons and the processing of retired weapons for Pu recovery. The purpose of this study was to estimate radiation doses to a cohort of 4499 RF workers from an intake of Pu, the primary plutonium isotope handled at the site.
The latest biokinetic models of the International Commission on Radiological Protection, or site-specific variations of those models, were used to estimate Pu intakes for each worker based on model fits to bioassay data often coupled with lung measurements.
Urinary excretion and lung retention data for most Pu intakes could be fit reasonably well by a mixture of Pu dioxide and moderately soluble material. For some workers, better fits were obtained by application of other absorption types including Type S, Pu nitrate, or pure Pu dioxide, or by assuming intake via a wound. The lungs typically received the highest tissue doses, with fifty-year committed equivalent doses in the range of 0.5-1 Sv for 275 workers, 1-5 Sv for 115 workers, and greater than 5 Sv for 12 workers.
RF was a unique site regarding a large number of lung measurements available for determining the appropriate absorption types for inhaled material. This provided higher confidence in reconstructed Pu doses than is generally gained from urinary data alone.
落基弗拉特(RF)工厂是一家武器制造设施,从20世纪50年代初运营至1989年。其主要任务是生产用于热核武器的钚(Pu)弹芯以及处理退役武器以回收钚。本研究的目的是估计4499名RF工厂工人因摄入钚(该场地处理的主要钚同位素)而受到的辐射剂量。
使用国际放射防护委员会的最新生物动力学模型,或这些模型的特定场地变体,根据通常与肺部测量相结合的生物测定数据的模型拟合来估计每名工人的钚摄入量。
大多数钚摄入量的尿排泄和肺部滞留数据可以通过二氧化钚和中等可溶性物质的混合物得到合理拟合。对于一些工人,通过应用其他吸收类型(包括S型、硝酸钚或纯二氧化钚)或假设通过伤口摄入,可以获得更好的拟合效果。肺部通常接受最高的组织剂量,275名工人的50年 committed等效剂量在0.5 - 1 Sv范围内,115名工人在1 - 5 Sv范围内,12名工人大于5 Sv。
就可用于确定吸入物质合适吸收类型的大量肺部测量而言,RF工厂是一个独特的场地。这为重建的钚剂量提供了比仅从尿液数据通常获得的更高的置信度。