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Experimental Study on Bioclogging in Porous Media during the Radioactive Effluent Percolation

机译:放射性废水渗滤过程中多孔介质中生物阻塞的实验研究

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The sand columns inoculated with the indigenous microorganism (Aspergillus niger) were used to investigate the effect of bioclogging during the radioactive effluent percolation. The hydraulic gradient, volumetric flow rate, and uranyl ions concentration were monitored over time. The sand columns were operated with continuous radioactive effluent of uranium tailings reservoir. After 68 days, the hydraulic conductivity of the sand columns decreased more than 72%, and the adsorption rate of uranyl ions by Aspergillus niger reached more than 90%. Environmental scanning electron microscope imaging confirmed the biofilm covering the surface of sand particles and connecting sand particles together, which resulted in a reduction of hydraulic conductivity. The results indicated that the propagation of Aspergillus niger can clog the seepage channel and effectively adsorb the uranyl ions of radioactive effluent in the porous media, which provides a suitable measure for controlling the migration of radioactive effluent of uranium tailings reservoir into the subsurface environment.
机译:接种了本地微生物(黑曲霉)的沙柱用于研究放射性废水渗滤过程中生物阻塞的影响。随时间监测水力梯度,体积流速和铀酰离子浓度。砂柱与铀尾矿储层的连续放射性废液一起运行。 68天后,砂柱的水力传导率下降了72%以上,黑曲霉对铀酰离子的吸附率达到90%以上。环境扫描电子显微镜成像确认生物膜覆盖了沙粒的表面并将沙粒连接在一起,从而导致了水力传导性的降低。结果表明,黑曲霉的繁殖可以堵塞渗流通道,并有效地吸附多孔介质中放射性废料中的铀酰离子,为控制铀尾矿库放射性废料向地下环境的迁移提供了合适的措施。

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