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在中亚热带东南地中海地区的铷和锂含量及可利用性:潜在的健康影响。

On the rubidium and lithium content and availability in the sub-arid south-eastern Mediterranean: potential health implications.

机构信息

Faculty of Civil and Environmental Engineering, Technion-Israel Institute of Technology, 3200003, Haifa, Israel.

出版信息

Environ Geochem Health. 2018 Oct;40(5):1841-1851. doi: 10.1007/s10653-018-0134-8. Epub 2018 Jun 14.

Abstract

Rubidium and lithium are rather rare elements in environmental research, despite their affiliation with a group of chemically active metals and the abundance of Rb in the environment. A growing body of evidence, although controversial, has indicated that both elements possess unique essential and neurophysiological characteristics in biota and humans. Both elements may concentrate in soil and vegetation of sub-arid environments. We investigated the content and (potential) availability of Rb and Li in the soils and natural waters of Galilee, the Coastal Plain, and the northern Negev of Israel. A newly developed chromatographic technique for the separation of truly dissolved Rb and Li compounds has been applied. High concentrations of Rb, together with high values of the potentially vital Rb-to-K ratio, were found in the soils, the soil solutions, rainwater, throughfall water, and the plant litter leachates, but not in the surface and spring waters. This may indicate a sequestration of Rb in the local soils and a semi-closed Rb turnover in the soil-plant system with a major input from sea aerosols. Low Li bulk and available concentrations were determined in all the natural compartments. Possible implications of such specific environmental features on the local population health were discussed.

摘要

铷和锂是环境研究中相当罕见的元素,尽管它们与一组化学活性金属有关,并且铷在环境中的丰度很高。越来越多的证据表明,尽管存在争议,但这两种元素在生物群和人类中都具有独特的必需和神经生理特性。这两种元素可能集中在亚干旱环境的土壤和植被中。我们调查了以色列加利利、沿海平原和内盖夫北部的土壤和天然水中的 Rb 和 Li 的含量和(潜在)可用性。已经应用了一种新开发的色谱技术来分离真正溶解的 Rb 和 Li 化合物。在土壤、土壤溶液、雨水、穿透水和植物凋落物浸出液中发现了高浓度的 Rb 以及高潜在重要的 Rb 与 K 比值,但在地表水和泉水。这可能表明 Rb 在当地土壤中的隔离以及土壤-植物系统中 Rb 循环的半封闭性,主要来自海气溶胶。在所有天然隔室中均确定了低 Li 总量和有效浓度。讨论了这种特定环境特征对当地人口健康的可能影响。

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