Evaluation of anion exchange resin for sorption of selenium (IV) from aqueous solutions

被引:0
作者
El-Tantawy, A. [1 ]
Abu Elgoud, E. M. [2 ]
Sharaf El-Deen, S. E. A. [3 ]
机构
[1] Egyptian Atom Energy Author, Hot Labs Ctr, Nucl Fuel Technol Dept, PO 13759, Cairo, Egypt
[2] Egyptian Atom Energy Author, Hot Labs Ctr, Nucl Fuel Chem Dept, PO 13759, Cairo, Egypt
[3] Egyptian Atom Energy Author, Hot Labs Ctr, Nucl Chem Dept, PO 13759, Cairo, Egypt
关键词
Amberlite IRA-400 Cl-; Se(IV); Sorption; Isotherm and kinetics; Desorption and regeneration; AMBERLITE IRA-400; WATER; ADSORPTION; REMOVAL; EQUILIBRIUM; RECOVERY; SELENATE; SE(IV);
D O I
10.1186/s13065-024-01356-3
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this work, selenium (IV) ions were adsorbed from aqueous solutions by the strongly basic anion exchange resin Amberlite IRA-400. The morphology of the resin before and after Se(IV) sorption was investigated using different techniques such as energy dispersive X-ray spectroscopy (EDX), Fourier transform infrared spectroscopy (FTIR), and scanning electron microscopy (SEM). To determine the ideal sorption conditions, a batch approach was used to examine the variables affecting Se(IV) sorption performance, including pH, shaking time, adsorbent dosage, initial metal ion concentration, and temperature. The results showed the optimal parameters for the highest percentage of selenium (80.25%) at an initial concentration of 100.0 mg L-1, pH 3.0, the adsorbent dosage of 10.0 mg, and the shaking time of 60.0 min. According to the experimental findings, the sorption process was satisfactorily explained by the pseudo-second-order kinetic model. The maximum adsorption capacity at pH 3.0 was 18.52 mg g(-1), and the adsorption rather well followed the Langmuir adsorption isotherm. Moreover, exothermic and spontaneous sorption reaction was the result of thermodynamic properties (negativity of both Delta G degrees and Delta H degrees). The adsorption phase's random distribution of the resin-solution interface is indicated by the positive value of Delta S-o. Finally, the desorption study was performed using different concentrations of desorbing agents; HNO3, HCl, and sodium acetate. The results illustrated that the effective desorbing agent was 1.0 mol L-1 HNO3, with desorption efficiency reaching about 96.4%. Finally, the Amberlite IRA-400 demonstrated excellent adsorption-desorption behavior over five times, suggesting that the Amberlite IRA-400 could be an effective candidate for the sorption of Se(IV) from several metal ions that occur in fission products.
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页数:11
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