Optimization of lead removal from aqueous solution using goethite/chitosan nanocomposite by response surface methodology

[Display omitted] •Goethite nanoparticles were used as reinforcement agent in nanocomposite structure.•Goethite/chitosan nanocomposites were used as sorbents for lead removal.•Box-bhenken experimental design was used to provide adsorption model.•The removal efficiency of nanocomposite was greater th...

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Published inColloids and surfaces. A, Physicochemical and engineering aspects Vol. 484; pp. 216 - 225
Main Authors Rahimi, Safoora, Moattari, Rozita M., Rajabi, Laleh, Derakhshan, Ali Ashraf
Format Journal Article
LanguageEnglish
Published Elsevier B.V 05.11.2015
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Abstract [Display omitted] •Goethite nanoparticles were used as reinforcement agent in nanocomposite structure.•Goethite/chitosan nanocomposites were used as sorbents for lead removal.•Box-bhenken experimental design was used to provide adsorption model.•The removal efficiency of nanocomposite was greater than pure chitosan film. This work investigates goethite/chitosan nanocomposites for their use in lead removal from aqueous solutions. Goethite nanoparticles were synthesized and characterized by FTIR, DLS, and SEM. Goethite nanoparticles were identified as nanospheres with the average diameter of 10–60nm. The optimum conditions were determined using response surface methodology (RSM) based on three-variable-three-level Box–Behnken design (BBD). The effects of three variables, i.e., initial solution pH, adsorbent mass and initial concentration of Pb(II) ions on the removal efficiency for Pb(II) ions were evaluated. The optimal conditions for the lead removal were found to be 6, 0.05g, and 74.4mg/L, for the initial solution pH, adsorbent mass and the initial concentration of Pb(II) ions, respectively. Under these conditions, maximum lead removal efficiency was obtained to 98.26% that was in respectable agreement with the model (97.19%). The modified quadratic model exhibited excellent stability for Pb(II) adsorption by goethite/chitosan nanocomposite. The results of adsorption study by goethite/chitosan nanocomposite revealed that Pb(II) uptake was enhanced by chitosan film using goethite nanoparticles.
AbstractList [Display omitted] •Goethite nanoparticles were used as reinforcement agent in nanocomposite structure.•Goethite/chitosan nanocomposites were used as sorbents for lead removal.•Box-bhenken experimental design was used to provide adsorption model.•The removal efficiency of nanocomposite was greater than pure chitosan film. This work investigates goethite/chitosan nanocomposites for their use in lead removal from aqueous solutions. Goethite nanoparticles were synthesized and characterized by FTIR, DLS, and SEM. Goethite nanoparticles were identified as nanospheres with the average diameter of 10–60nm. The optimum conditions were determined using response surface methodology (RSM) based on three-variable-three-level Box–Behnken design (BBD). The effects of three variables, i.e., initial solution pH, adsorbent mass and initial concentration of Pb(II) ions on the removal efficiency for Pb(II) ions were evaluated. The optimal conditions for the lead removal were found to be 6, 0.05g, and 74.4mg/L, for the initial solution pH, adsorbent mass and the initial concentration of Pb(II) ions, respectively. Under these conditions, maximum lead removal efficiency was obtained to 98.26% that was in respectable agreement with the model (97.19%). The modified quadratic model exhibited excellent stability for Pb(II) adsorption by goethite/chitosan nanocomposite. The results of adsorption study by goethite/chitosan nanocomposite revealed that Pb(II) uptake was enhanced by chitosan film using goethite nanoparticles.
Author Rahimi, Safoora
Moattari, Rozita M.
Rajabi, Laleh
Derakhshan, Ali Ashraf
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Keywords Nanocomposite
Box–Behnken design
Chitosan
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Goethite
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Snippet [Display omitted] •Goethite nanoparticles were used as reinforcement agent in nanocomposite structure.•Goethite/chitosan nanocomposites were used as sorbents...
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SubjectTerms Adsorption
Box–Behnken design
Chitosan
Goethite
Nanocomposite
Nanoparticle
Title Optimization of lead removal from aqueous solution using goethite/chitosan nanocomposite by response surface methodology
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