Adsorption Effect of Oxalic Acid-Chitosan-Bentonite Composite on Cr.sup.6+ in Aqueous Solution
In this paper, a gel adsorption material (CS@OB) was prepared by compounded oxalic acid modified bentonite with chitosan, which was used to remove Cr.sup.6+ from aqueous solution. Batch adsorption was carried out under different experimental conditions, such as pH value, adsorption dose, Cr.sup.6+ c...
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Veröffentlicht in: | Water, air, and soil pollution air, and soil pollution, 2023-08, Vol.234 (8) |
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Sprache: | eng |
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Zusammenfassung: | In this paper, a gel adsorption material (CS@OB) was prepared by compounded oxalic acid modified bentonite with chitosan, which was used to remove Cr.sup.6+ from aqueous solution. Batch adsorption was carried out under different experimental conditions, such as pH value, adsorption dose, Cr.sup.6+ concentration, temperature, time and coexisting ions, to evaluate the adsorption effect of CS@OB. The experimental data were fitted and analyzed by adsorption kinetic model, adsorption isotherm model, and adsorption thermodynamic, and the structure and adsorption mechanism of CS@OB were characterized by SEM-EDS, FTIR and XPS. The results showed that pH had a great influence on the removal of Cr.sup.6+ by CS@OB, and the removal efficiency could reach above 99% when pH was 2-3. According to the fitting results of adsorption isotherms (Langmuir and Freundlich), adsorption kinetics (pseudo-first-order and pseudo-second-order) and adsorption thermodynamics, Langmuir isotherm model and pseudo-second-order kinetic model were more suitable for experimental data. The adsorption mechanism was spontaneous and endothermic monolayer chemical adsorption, and the maximum adsorption capacity could reach 111.47 mg·g.sup.-1. The adsorption of Cr.sup.6+ by CS@OB mainly included electrostatic attraction and redox. Nitrogen-containing groups were protonated with positive charge, which effectively combined with Cr.sup.6+ (HCrO.sub.4.sup.-/Cr.sub.2O.sub.7.sup.2-) in solution through electrostatic attraction. Therefore, CS@OB can be used as an effective adsorbent to remove Cr.sup.6+ ions from water samples. |
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ISSN: | 0049-6979 |
DOI: | 10.1007/s11270-023-06543-x |