首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Biosorption of Strontium from Simulated Nuclear Wastewater by Scenedesmus spinosus under Culture Conditions: Adsorption and Bioaccumulation Processes and Models
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Biosorption of Strontium from Simulated Nuclear Wastewater by Scenedesmus spinosus under Culture Conditions: Adsorption and Bioaccumulation Processes and Models

机译:在培养条件下Scendesmus spinosus从模拟核废水中对锶的生物吸附:吸附和生物累积过程及模型

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摘要

Algae biosorption is an ideal wastewater treatment method when coupled with algae growth and biosorption. The adsorption and bioaccumulation of strontium from simulated nuclear wastewater by Scenedesmus spinosus were investigated in this research. One hundred mL of cultured S. spinosus cells with a dry weight of 1.0 mg in simulated nuclear wastewater were used to analyze the effects on S. spinosus cell growth as well as the adsorption and bioaccumulation characters under conditions of 25 ± 1 °C with approximately 3,000 lux illumination. The results showed that S. spinosus had a highly selective biosorption capacity for strontium, with a maximum bioremoval ratio of 76%. The adsorbed strontium ion on cell walls was approximately 90% of the total adsorbed amount; the bioaccumulation in the cytoplasm varied by approximately10%. The adsorption quantity could be described with an equilibrium isotherm. The pseudo-second-order kinetic model suggested that adsorption was the rate-limiting step of the biosorption process. A new bioaccumulation model with three parameters was proposed and could give a good fit with the experiment data. The results suggested that S. spinosus may be a potential biosorbent for the treatment of nuclear wastewater in culture conditions.
机译:与藻类生长和生物吸附相结合时,藻类生物吸附是一种理想的废水处理方法。本研究研究了Scendesmus spinosus对模拟核废水中锶的吸附和生物富集。在模拟核废水中,以100 mL干重1.0 mg的S. spinosus细胞进行培养,以分析对S. spinosus细胞生长的影响以及在25±1°C(约25°C)下的吸附和生物蓄积特性。 3,000勒克斯照明。结果表明,刺糖多孢菌对锶具有很高的选择性吸附能力,最大去除率为76%。细胞壁上吸附的锶离子约占总吸附量的90%。细胞质中的生物蓄积变化约10%。吸附量可用平衡等温线描述。拟二级动力学模型表明吸附是生物吸附过程的限速步骤。提出了一个新的具有三个参数的生物蓄积模型,可以很好地拟合实验数据。结果表明,S。spinosus可能是潜在的生物吸附剂,用于处理培养条件下的核废水。

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