S. Al-asheh et al., Predictions of binary sorption isotherms for the sorption of heavy metals by pine bark using single isotherm data, CHEMOSPHERE, 41(5), 2000, pp. 659-665
The adsorption of three heavy metal ions by pine bark was studied. The stud
y was divided into two parts; single component adsorption of the metals Cu2
+, Cd2+ and Ni2+ and bisolute adsorption of the three binary systems Cu2+-C
d2+, Cu2+-Ni2+ and Cd2+-Ni2+. Extended Langmuir model, extended Freundlich
model, Sips model and ideal adsorption solution theory (IAST) models were u
sed to predict the equilibrium uptake for Cu2+, Cd2+ and Ni2+ in the binary
diluted solutions using the single adsorption constants. The experimental
data of single isotherm adsorption process were found to follow Langmuir is
otherm model with less accuracy than Freundlich and Sips models. Whereas, t
he predictions of bisolute adsorption isotherms of the mentioned three syst
ems, Cu2+-Cd2+, Cu2+-Ni2+ and Cd2+-Ni2+, showed good agreement with experim
ental data when using Extended-Langmuir, Extended-Freundlich and IAST. Howe
ver, the only good fit of the Sips model was with the Cu2+-Cd2+ system. (C)
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