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Biosorption of uranium(VI) from aqueous solution by biomass of brown algae Laminaria japonica

机译:褐藻海带生物量对水溶液中铀(VI)的生物吸附

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The uranium(VI) adsorption efficiency of non-living biomass of brown algae was evaluated in various adsorption experimental conditions. Several different sizes of biomass were prepared using pretreatment and surface-modification steps. The kinetics of uranium uptake were mainly dependent on the particle size of the prepared Laminaria japonica biosorbent. The optimal particle size, contact time, and injection amount for the stable operation of the wastewater treatment process were determined. Spectroscopic analyses showed that uranium was adsorbed in the porous inside structure of the biosorbent. The ionic diffusivity in the biomass was the dominant rate-limiting factor; therefore, the adsorption rate was significantly increased with decrease of particle size. From the results of comparative experiments using the biosorbents and other chemical adsorbents/ precipitants, such as activated carbons, zeolites, and limes, it was demonstrated that the brown algae biosorbent could replace the conventional chemicals for uranium removal. As a post-treatment for the final solid waste reduction, the ignition treatment could significantly reduce the weight of waste biosorbents. In conclusion, the brown algae biosorbent is shown to be a favorable adsorbent for uranium(VI) removal from radioactive wastewater.
机译:在各种吸附实验条件下评价了褐藻非生物质对铀(VI)的吸附效率。使用预处理和表面改性步骤制备了几种不同大小的生物质。铀吸收的动力学主要取决于制备的海带生物吸附剂的粒径。确定了用于废水处理过程稳定运行的最佳粒径,接触时间和注入量。光谱分析表明,铀被吸附在生物吸附剂的多孔内部结构中。生物质中的离子扩散率是主要的限速因素。因此,随着颗粒尺寸的减小,吸附速率显着增加。从使用生物吸附剂和其他化学吸附剂/沉淀剂(例如活性炭,沸石和石灰)的比较实验结果可以证明,褐藻生物吸附剂可以代替常规的化学物质去除铀。作为最终减少固体废物的后处理,引燃处理可以显着减少废物生物吸附剂的重量。总之,褐藻类生物吸附剂被证明是从放射性废水中去除铀(VI)的有利吸附剂。

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