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水中和废水中的天然和人为放射性核素:来源、处理和回收。

Natural and anthropogenic radionuclides in water and wastewater: Sources, treatments and recoveries.

机构信息

Department of Environmental Engineering, Imam Abdulrahman Bin Faisal University, USA.

出版信息

J Environ Radioact. 2020 Dec;225:106423. doi: 10.1016/j.jenvrad.2020.106423. Epub 2020 Sep 29.

Abstract

Water-energy nexus in the context of changing climate amplifies the importance of comprehending the transport, fate and recovery of radioisotope. While countries have been more interested for zero/low greenhouse gas emission technologies, energy production from nuclear power plant (NPP) can be a prominent solution. Moreover, radioisotopes are also used for other benefits such as in medical science, industrial activities and many more. These radionuclides are blended accidently or intentionally with water or wastewater because of inefficacious management of the nuclear waste; and therefore, it is an imperative task to manage nuclear waste so that the harmful consequences of the waste on environment, ecology and human health can be dispelled. Due to generation of significant amount of waste throughout its utilization, a noticeable number of physical, chemical and biological processes has been introduced as remediation processes although mechanisms of optimum removal process are still under investigation. Removal mechanisms and influencing factors for radionuclide removal are elucidated in this review so that, further, operation and process development can be promoted. Again, resource recovery, opportunities and challenges are also discussed for elevating the removal rates and minimizing the knowledge gaps existing in development and applications of novel decontamination processes.

摘要

在气候变化的背景下,水-能源关系凸显了理解放射性同位素的迁移、归宿和回收的重要性。虽然各国对零/低温室气体排放技术更感兴趣,但核能发电厂(NPP)的能源生产可以是一个突出的解决方案。此外,放射性同位素也用于其他方面的益处,如在医学科学、工业活动等领域。由于核废料管理不善,这些放射性核素会意外或故意与水或废水混合;因此,管理核废料是一项必要的任务,以消除废料对环境、生态和人类健康的有害影响。由于在利用过程中会产生大量的废物,因此已经引入了许多物理、化学和生物过程作为修复过程,尽管最佳去除过程的机制仍在研究中。本综述阐述了去除放射性核素的去除机制和影响因素,以便进一步促进操作和工艺开发。此外,还讨论了资源回收、机会和挑战,以提高去除率,并最大限度地减少新型去污工艺开发和应用中存在的知识差距。

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