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Sr(II) Removal from Aqueous Solution by Pseudomonas Fluorescens Biomass, Equilibrium and Kinetic Studies

机译:荧光假单胞菌生物质去除水溶液中Sr(II),平衡和动力学研究

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Batch experiments were carried out to determine the capacity of Pseudomonas fluorescens biomass to adsorb Sr(II) ions from aqueous solution with respect to pH, initial Sr(II) concentration, contact time and biomass dose. The FTIR results of Pseudomonas fluorescens biomass showed that biomass has different functional groups and these functional groups are able to react with metal ion in aqueous solution. The experimental data were modeled by Langmuir and Freundlich isotherm models. Langmuir model resulted in the best fit of the adsorption data. The maximum adsorption capacity for Sr(II) was 80.06 mg/g. The pseudo-first order and pseudo-second order models were used to describe the kinetic data and to evaluate rate constants. The best correlation was provided by the second-order kinetic model, implying that chemical sorption was the rate-limiting step. The practical implication of this study is the development of an effective and economic technology for Sr(II) removal from contaminated waters.
机译:进行批处理实验以确定相对于pH值,初始Sr(II)浓度,接触时间和生物质剂量,荧光假单胞菌生物质从水溶液中吸附Sr(II)离子的能力。荧光假单胞菌生物质的FTIR结果表明,生物质具有不同的官能团,并且这些官能团能够与水溶液中的金属离子反应。实验数据通过Langmuir和Freundlich等温线模型进行建模。 Langmuir模型导致吸附数据的最佳拟合。 Sr(II)的最大吸附容量为80.06 mg / g。伪一阶和伪二阶模型用于描述动力学数据和评估速率常数。二级动力学模型提供了最佳相关性,这表明化学吸附是限速步骤。这项研究的实际意义是开发一种有效,经济的技术,以从受污染的水中去除Sr(II)。

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