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放射性锶在植物中的迁移及其植物修复。

Radiostrontium transport in plants and phytoremediation.

机构信息

Institut für Radioökologie und Strahlenschutz (IRS), Leibniz Universität Hannover, Herrenhäuser Str. 2, 30419, Hannover, Germany.

出版信息

Environ Sci Pollut Res Int. 2018 Oct;25(30):29996-30008. doi: 10.1007/s11356-018-3088-6. Epub 2018 Sep 5.

Abstract

Radiostrontium is a common product of nuclear fission and was emitted into the environment in the course of nuclear weapon tests as well as from nuclear reactor accidents. The release of Sr and Sr into the environment can pose health threats due to their characteristics such as high specific activities and easy access in human body due to its chemical analogy to calcium. Radiostrontium enters the human food chain by the consumption of plants grown on sites comprising fission-derived radionuclides. For humans, Sr is not an essential element, but, due to solubility in water and homology with calcium, once interred in the body, it gets deposited in bones and in teeth. This concern has drawn the attention of researchers throughout the globe to develop sustainable treatment processes to remediate soil and water resources. Nowadays, phytoremediation has become a promising approach for the remediation of large extents of toxic heavy metals. Some of the plants have been reported to accumulate Sr inside their biomass but detailed mechanisms at genetic level are still to be uncovered. However, there is inadequate information offered to assess the possibility of this remediation approach. This review highlights phytoremediation approach for Sr and explains in detail the uptake mechanism inside plants.

摘要

放射性锶是核裂变的常见产物,曾在核武器试验以及核反应堆事故中被排放到环境中。由于其高比活度和与钙的化学相似性,容易进入人体,因此 Sr 和 Sr 的释放会对健康构成威胁。放射性锶通过食用在包含裂变衍生放射性核素的地点生长的植物进入人类食物链。对于人类来说,Sr 不是必需元素,但由于它在水中的溶解度和与钙的同源性,一旦被埋在体内,它就会沉积在骨骼和牙齿中。这一问题引起了全球研究人员的关注,他们正在开发可持续的处理工艺来修复土壤和水资源。如今,植物修复已成为修复大量有毒重金属的一种很有前途的方法。据报道,一些植物会在其生物量内积累 Sr,但遗传水平上的详细机制仍有待揭示。然而,目前提供的信息不足以评估这种修复方法的可能性。本综述重点介绍了用于 Sr 的植物修复方法,并详细解释了植物内部的吸收机制。

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