Article ID Journal Published Year Pages File Type
1233200 Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2015 9 Pages PDF
Abstract

•Magnetic corn stalk was used as an adsorbent for the removal of Direct Red 23.•The equilibrium data fitted well with the Freundlich model.•Adsorption of Direct Red 23 onto corn stalk was favored at low pH.•The pseudo-second-order kinetic model fits better with experimental data.

The objective of this study was to assess the suitability and efficiency of corn stalk (CS) for the removal of diazo dye Direct Red 23 (DR23) from aqueous solutions. The effect of different variables in the batch method as a function of solution pH, contact time, initial dye concentration, CS amount, temperature, and so forth by the optimization method has been investigated. The color reduction was monitored by spectrophotometry at 503 nm before and after DR23 adsorption on the CS, and the removal percentage was calculated using the difference in absorbance. The sorption processes followed the pseudo second order in addition to intraparticle diffusion kinetics models with a good correlation coefficient with the overall entire adsorption of DR23 on adsorbent. The experimental equilibrium data were tested by four widely used isotherm models namely, Langmuir, Freundlich, Tempkin and Dubinin–Radushkevich (D–R). It was found that adsorption of DR23 on CS well with the Freindlich isotherm model, implying monolayer coverage of dye molecules onto the surface of the adsorbent. More than 99% removal efficiency was obtained within 10 min at adsorbent dose of 0.2 g for initial dye concentration of 10–90 mg L−1 at pH 3. Various thermodynamic parameters, such as Gibbs free energy, entropy, and enthalpy, of the ongoing adsorption process have been calculated. Judgment based on the obtained results of thermodynamic values shows the spontaneous and endothermic nature adsorption processes on adsorbent.

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Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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