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Removal of radioactive cesium from an aqueous solution via bioaccumulation by microalgae and magnetic separation

机译:通过微藻类生物富集和磁分离从水溶液中去除放射性铯

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摘要

We evaluated the potential sequestration of cesium (Cs+) by microalgae under heterotrophic growth conditions in an attempt to ultimately develop a system for treatment of radioactive wastewater. Thus, we examined the effects of initial Cs+ concentration (100–500 μM), pH (5–9), K+ and Na+ concentrations (0–20 mg/L), and different organic carbon sources (acetate, glycerol, glucose) on Cs+ removal. Our initial comparison of nine microalgae indicated that Desmodesmus armatus SCK had removed the most Cs+ under various environmental conditions. Addition of organic substrates significantly enhanced Cs+ uptake by D. armatus, even in the presence of a competitive cation (K+). We also applied magnetic nanoparticles coated with a cationic polymer (polyethylenimine) to separate 137Cs-containing microalgal biomass under a magnetic field. Our technique of combining bioaccumulation and magnetic separation successfully removed more than 90% of the radioactive 137Cs from an aqueous medium. These results clearly demonstrate that the method described here is a promising bioremediation technique for treatment of radioactive liquid waste.
机译:我们评估了在异养生长条件下微藻对铯(Cs + )的潜在螯合作用,以期最终开发出一种用于处理放射性废水的系统。因此,我们研究了初始Cs + 浓度(100–500μM),pH(5–9),K + 和Na + Cs + 去除浓度(0–20μmg / L)和不同的有机碳源(乙酸盐,甘油,葡萄糖)。我们对9种微藻的初步比较表明,在不同的环境条件下,非洲锥De(Desmodesmus armatus)SCK去除了最多的Cs + 。即使存在竞争性阳离子(K + ),有机底物的添加也显着提高了armatus的Cs + 吸收。我们还应用了涂覆有阳离子聚合物(聚乙烯亚胺)的磁性纳米颗粒,以在磁场下分离含 137 Cs的微藻生物质。我们将生物累积和磁分离结合起来的技术成功地从水性介质中去除了90%以上的放射性 137 Cs。这些结果清楚地表明,此处描述的方法是一种用于处理放射性液体废物的有前途的生物修复技术。

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