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美国煤和煤燃烧残余物中的天然放射性物质。

Naturally Occurring Radioactive Materials in Coals and Coal Combustion Residuals in the United States.

机构信息

Center for Applied Energy Research, University of Kentucky , Lexington, Kentucky 40511, United States.

出版信息

Environ Sci Technol. 2015 Sep 15;49(18):11227-33. doi: 10.1021/acs.est.5b01978. Epub 2015 Sep 2.

Abstract

The distribution and enrichment of naturally occurring radioactive materials (NORM) in coal combustion residuals (CCRs) from different coal source basins have not been fully characterized in the United States. Here we provide a systematic analysis of the occurrence of NORM ((232)Th, (228)Ra, (238)U, (226)Ra, and (210)Pb) in coals and associated CCRs from the Illinois, Appalachian, and Powder River Basins. Illinois CCRs had the highest total Ra ((228)Ra + (226)Ra = 297 ± 46 Bq/kg) and the lowest (228)Ra/(226)Ra activity ratio (0.31 ± 0.09), followed by Appalachian CCRs (283 ± 34 Bq/kg; 0.67 ± 0.09), and Powder River CCRs (213 ± 21 Bq/kg; 0.79 ± 0.10). Total Ra and (228)Ra/(226)Ra variations in CCRs correspond to the U and Th concentrations and ash contents of their feed coals, and we show that these relationships can be used to predict total NORM concentrations in CCRs. We observed differential NORM volatility during combustion that results in (210)Pb enrichment and (210)Pb/(226)Ra ratios greater than 1 in most fly-ash samples. Overall, total NORM activities in CCRs are 7-10- and 3-5-fold higher than NORM activities in parent coals and average U.S. soil, respectively. This study lays the groundwork for future research related to the environmental and human health implications of CCR disposal and accidental release to the environment in the context of this elevated radioactivity.

摘要

美国尚未充分描述来自不同煤源盆地的煤燃烧残余物(CCR)中天然存在的放射性物质(NORM)的分布和富集情况。在这里,我们对伊利诺伊州、阿巴拉契亚州和粉河盆地的煤及其相关 CCR 中 NORM((232)Th、(228)Ra、(238)U、(226)Ra 和 (210)Pb)的存在情况进行了系统分析。伊利诺伊州 CCR 中的总镭((228)Ra + (226)Ra = 297 ± 46 Bq/kg)最高,(228)Ra/(226)Ra 活度比最低(0.31 ± 0.09),其次是阿巴拉契亚州 CCR(283 ± 34 Bq/kg;0.67 ± 0.09)和粉河 CCR(213 ± 21 Bq/kg;0.79 ± 0.10)。CCR 中的总镭和 (228)Ra/(226)Ra 变化与它们的给料煤中的 U 和 Th 浓度和灰分含量相对应,我们表明这些关系可用于预测 CCR 中的总 NORM 浓度。我们观察到燃烧过程中 NORM 的挥发性不同,导致大多数飞灰样品中的 (210)Pb 富集和 (210)Pb/(226)Ra 比值大于 1。总体而言,CCR 中的总 NORM 活度分别比母煤和美国平均土壤中的 NORM 活度高 7-10 倍和 3-5 倍。本研究为未来研究奠定了基础,这些研究涉及 CCR 处置对环境的影响以及在这种放射性升高的情况下意外释放到环境中对人类健康的影响。

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