The current study effectively designed novel cross-linked tosyl-carrageenan/alginate (Ts-Car/Alg) beads to remove Pb(2+) ions from their aqueous solutions. To confirm the structure of the produced matrix, characterization methods such as XRD, SEM, FTIR, and EDX were used. Batch experiments were employed in order to further evaluate the adsorption efficiency of Pb(2+) ions. Additionally, various variables, including contact time, solution pH, adsorbent dosage, and initial concentration of Pb(2+) ions were investigated using atomic absorption. The results of this study showed that the adsorption equilibrium increased as Pb(2+) ions concentration increased at pHâ=â5.3 after a contact time of 120Â min, with 0.3Â g of Ts-Car/Alg that having the best adsorption capacity at 74Â mg/g. The adsorption progression was further examined using the kinetic and isothermal models. With a correlation coefficient of 0.975, the Freundlich model was thought to better fit Pb(2+) ions adsorption from the isotherm investigation. Also, the adsorption kinetics were investigated using a pseudo-second-order model with 1/n ratio of 0.683. This Ts-Car/Alg adsorbent is regarded as an effective candidate to be used for water treatment because the reusability process of produced beads was successfully completed twice, and the adsorbent maintained its ability to remove Pb(2+) ions. The prepared Ts-Car/Alg beads are therefore excellent candidates to be used as potent Pb(2+) ions adsorbents from their aqueous solutions. The Ts-Car/Alg beads' regeneration and reusability investigation for the removal of heavy metal ions was completed in at least two successful cycles.
Tosyl-carrageenan/alginate composite adsorbent for removal of Pb(2+) ions from aqueous solutions.
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作者:Awed Mohamed, Mohamed Riham R, Kamal Kholod H, Sabaa Magdy W, Ali Korany A
| 期刊: | BMC Chemistry | 影响因子: | 4.600 |
| 时间: | 2024 | 起止号: | 2024 Jan 6; 18(1):8 |
| doi: | 10.1186/s13065-023-01103-0 | ||
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