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Inorganic and Hybrid (Organic–Inorganic) Lamellar Materials for Heavy Metals and Radionuclides Capture in Energy Wastes Management—A Review

机译:能源废物管理中用于重金属和放射性核素捕获的无机和杂化(有机-无机)层状材料-综述

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摘要

The energy industry (nuclear, battery, mining industries, etc.) produces a large quantity of hazardous effluents that may contain radionuclides (137Cs and 90Sr in particular) and heavy metals. One of the hardest tasks of environmental safety and sustainable development is the purification of wastewater holding these pollutants. Adsorption is one of the most powerful methods for extracting toxic compounds from wastewater. This study reviews the usefulness of clay minerals as adsorbent for removing these hazardous elements to clean up energy production processes. Phyllosilicates are able to extract several heavy metals from effluent, as widely examined. A particular focus is given to synthetic phyllosilicates and their abilities to entrap heavy metals with a special attention paid to those synthesized by sol-gel route. Indeed, this method is attractive since it allows the development of organic–inorganic hybrids from organosilanes presenting various functions (amino, thiol, etc.) that can interact with pollutants. Regarding these pollutants, a part of this review focuses on the interaction of lamellar materials (natural and synthetic phyllosilicates as well as layered double hydroxide) with heavy metals and another part deals with the adsorption of specific radionuclides, cesium and strontium.
机译:能源行业(核能,电池,采矿业等)产生大量的有害废液,其中可能含有放射性核素(尤其是 137 Cs和 90 Sr)且重金属。环境安全和可持续发展的最艰巨任务之一是净化含有这些污染物的废水。吸附是从废水中提取有毒化合物的最有效方法之一。这项研究回顾了粘土矿物作为吸附剂的作用,以去除这些有害元素以清理能源生产过程。硅硅酸盐能够从废水中提取几种重金属,这一点已得到广泛研究。特别关注合成页硅酸盐及其捕获重金属的能力,并特别关注通过溶胶-凝胶法合成的那些。的确,这种方法很有吸引力,因为它允许从具有各种功能(氨基,硫醇等)的有机硅烷开发有机-无机杂化物,这些杂物可以与污染物相互作用。关于这些污染物,本综述的一部分重点在于层状材料(天然和合成的层状硅酸盐以及层状双氢氧化物)与重金属的相互作用,另一部分涉及特定放射性核素铯和锶的吸附。

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