Equilibrium studies for the sorption of lead from effluents using chitosan
The sorption of lead ions from aqueous solution onto chitosan has been studied. Equilibrium
studies have been carried out to determine the capacity of chitosan for lead ions. The effects
of solution pH and chitosan particle size on the sorption capacity have been studied. The
experimental data were analyzed using three equilibrium isotherm correlations, namely,
Langmuir, Freundlich and Redlich–Peterson equations. The linear correlation coefficients
were determined for each isotherm and the Freundlich provided the best fit. In addition, error …
studies have been carried out to determine the capacity of chitosan for lead ions. The effects
of solution pH and chitosan particle size on the sorption capacity have been studied. The
experimental data were analyzed using three equilibrium isotherm correlations, namely,
Langmuir, Freundlich and Redlich–Peterson equations. The linear correlation coefficients
were determined for each isotherm and the Freundlich provided the best fit. In addition, error …
The sorption of lead ions from aqueous solution onto chitosan has been studied. Equilibrium studies have been carried out to determine the capacity of chitosan for lead ions. The effects of solution pH and chitosan particle size on the sorption capacity have been studied. The experimental data were analyzed using three equilibrium isotherm correlations, namely, Langmuir, Freundlich and Redlich–Peterson equations. The linear correlation coefficients were determined for each isotherm and the Freundlich provided the best fit. In addition, error functions have been used to determine the alternative single component equilibrium isotherm parameters by non-linear regression due to the inherent bias in using the correlation coefficient from the linearization. This technique enables the “best fit” isotherm parameters to be used in the equilibrium equations for the sorption of lead ions on chitosan within the limits and assumptions of the various error analysis methods.
Elsevier
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