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放射性铯(¹³⁷Cs)在陆地环境中的释放、沉积和消除。

Release, deposition and elimination of radiocesium ((137)Cs) in the terrestrial environment.

作者信息

Ashraf Muhammad Aqeel, Khan Ayesha Masood, Ahmad Mushtaq, Akib Shatirah, Balkhair Khaled S, Bakar Nor Kartini Abu

机构信息

Department of Geology, Faculty of Science, University of Malaya, 50603, Kuala Lumpur, Malaysia,

出版信息

Environ Geochem Health. 2014 Dec;36(6):1165-90. doi: 10.1007/s10653-014-9620-9. Epub 2014 May 8.

Abstract

Radionuclide contamination in terrestrial ecosystems has reached a dangerous level. The major artificial radionuclide present in the environment is (137)Cs, which is released as a result of weapon production related to atomic projects, accidental explosions of nuclear power plants and other sources, such as reactors, evaporation ponds, liquid storage tanks, and burial grounds. The release of potentially hazardous radionuclides (radiocesium) in recent years has provided the opportunity to conduct multidisciplinary studies on their fate and transport. Radiocesium's high fission yield and ease of detection made it a prime candidate for early radio-ecological investigations. The facility setting provides a diverse background for the improved understanding of various factors that contribute toward the fate and transfer of radionuclides in the terrestrial ecosystem. In this review, we summarize the significant environmental radiocesium transfer factors to determine the damaging effects of radiocesium on terrestrial ecosystem. It has been found that (137)Cs can trace the transport of other radionuclides that have a high affinity for binding to soil particles (silts and clays). Possible remedial methods are also discussed for contaminated terrestrial systems. This review will serve as a guideline for future studies of the fate and transport of (137)Cs in terrestrial environments in the wake of the Fukushima Nuclear Power Plant disaster in 2011.

摘要

陆地生态系统中的放射性核素污染已达到危险水平。环境中存在的主要人工放射性核素是(137)铯,它是由与原子项目相关的武器生产、核电站意外爆炸以及其他来源(如反应堆、蒸发池、液体储存罐和掩埋场)释放出来的。近年来,潜在危险放射性核素(放射性铯)的释放为开展关于其归宿和迁移的多学科研究提供了契机。放射性铯的高裂变产额和易于检测使其成为早期放射生态学研究的主要候选对象。该设施环境为更好地理解影响陆地生态系统中放射性核素归宿和迁移的各种因素提供了多样的背景。在本综述中,我们总结了重要的环境放射性铯迁移因子,以确定放射性铯对陆地生态系统的破坏作用。研究发现,(137)铯可以追踪其他对土壤颗粒(粉砂和黏土)具有高结合亲和力的放射性核素的迁移。文中还讨论了受污染陆地系统可能的修复方法。本综述将为2011年福岛核电站灾难后(137)铯在陆地环境中的归宿和迁移的未来研究提供指导。

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