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On the Optimal Use of Isotherm Models for the Characterization of Biosorption of Lead Onto Algae

F. Brouers, Tariq J. Al-Musawi
doi: https://doi.org/10.1101/017426
F. Brouers
aDepartment of Chemical Engineering, Liège University, Belgium, email:
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  • For correspondence: fbrouers@ulg.ac.be
Tariq J. Al-Musawi
bDepartment of Environmental Engineering, Baghdad University, Iraq, email:
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  • For correspondence: tariqjwad@yahoo.com
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Abstract

In this study the experimental isotherm data of biosorption of Pb(II) onto algae was modeled using several models. These models are: Langmuir, Hill-Sips, Brouers-Sotolongo, Brouers-Gaspard, and Redlich-Peterson models. The coefficients of each model were determined by non-linear fitting using Mathematica9 program. The maximum Pb(II) removal rate increased with the increase of temperature and reached the maximum value (98%) at the temperature of 40 °C. Even if the R2 error quantity is not the unique and always the best measure for nonlinear fitting, the Brouers-Sotolongo model gives in all cases the best fit and is definitely the most suitable one to satisfactorily describe bioisorption of Pb(II) on the algal biomass. In addition, this study shows that a complete set of data is necessary to have a good representation of the isotherm.

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Posted April 01, 2015.
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On the Optimal Use of Isotherm Models for the Characterization of Biosorption of Lead Onto Algae
F. Brouers, Tariq J. Al-Musawi
bioRxiv 017426; doi: https://doi.org/10.1101/017426
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On the Optimal Use of Isotherm Models for the Characterization of Biosorption of Lead Onto Algae
F. Brouers, Tariq J. Al-Musawi
bioRxiv 017426; doi: https://doi.org/10.1101/017426

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