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Biosorption of cesium(Ⅰ) from aqueous solution by a novel exopolymers secreted from Pseudomonas fluorescens C-2: Equilibrium and kinetic studies
作者姓名:Yanli Mao  Hongwei Hu  Yongsheng Yan
作者单位:[1]School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China [2]School of Environmental and Municipal Engineering Department, Henan University of Urban Construction, Pingdingshan 467000, China
基金项目:This work was supported by the National Natural Science Foundation of China (No. 30970309), the Natural Science Foundation of He’nan Province (No. 082102220009) and the Natural Science Foundation of He’nan Province Education Department (No. 2009A610001).
摘    要:

关 键 词:荧光假单胞菌  动力学数据  溶液吸附  平衡数据  水溶液  Langmuir模型  吸附等温线  
收稿时间:2010/1/22 0:00:00
修稿时间:2010/5/15 0:00:00

Biosorption of cesium(I) from aqueous solution by a novel exopolymers secreted from Pseudomonas fluorescens C-2: Equilibrium and kinetic studies
Yanli Mao,Hongwei Hu,Yongsheng Yan.Biosorption of cesium(I) from aqueous solution by a novel exopolymers secreted from Pseudomonas fluorescens C-2: Equilibrium and kinetic studies[J].Journal of Environmental Sciences,2011,23(7):1104-1112.
Authors:Yanli Mao  Hongwei Hu and Yongsheng Yan
Institution:1. School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China. E-mail: myanliao@ 163.com ;School of Environmental and Municipal Engineering Department, Henan University of Urban Construction,Pingdingshan 467000, China
2. School of Environmental and Municipal Engineering Department, Henan University of Urban Construction,Pingdingshan 467000, China
3. School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China. E-mail: myanliao@ 163.com
Abstract:The biosorption characteristics of Cs(I) ions from aqueous solution using exopolymers (PFC02) produced from Pseudomonas fluorescens C-2 were investigated as a function of pH, biosorbent dosage, contact time and initial concentration. pH played a major role in the adsorption process, and the optimum pH for the removal of Cs(I) was 8.0. Langmuir, Freundlich and Dubinin-Radushkevich (D-R) models were applied to describe the biosorption isotherm of the Cs(I) ions by PFC02. The Lagergren first-order, pseudo second-order kinetic and intraparticle diffusion models were used to test the kinetic data. Langmuir model and D-R model fitted the equilibrium data better than the Freundlich isotherm. The monolayer adsorption capacities of PFC02 as obtained from Langmuir isotherm at 25°C was found to be 32.63 mg/g. From the D-R isotherm model, the mean free energy was calculated as 26.73 kJ/mol, indicating that the biosorption of cesium was chemisorption. The biosorption process was rapid, and the kinetic rates were best fitted to the pseudo second-order model, which indicated the biosorption process operated through chemisorption mechanism. FT-IR analysis of PFC02 showed the possible functional groups responsible for cesium adsorption were hydroxyl, carboxyl, carbonyl and sulphonate groups. SEM analysis showed the porous structure of the material while EDX analysis confirmed the adsorption of Cs(I) on PFC02. Cesium adsorbed onto the PFC02 could be desorbed efficiently using 1 mol/L HNO3, and the enrichment factor was 50.0. Furthermore, PFC02 could be reused five times with only about 8.25% regeneration loss. The developed method was successfully utilized for the removal of Cs(I) ions from aqueous solution.
Keywords:Pseudomonas fluorescens C-2  exopolymers  Cs(I)  biosorption  isotherm  kinetics
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