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Titre: | Elaboration of a new Activated Carbon derived from the Crown of Oak (ACOW) to removal the toxic Iodine: Kinetic, Isotherms modelling and Thermodynamics Study |
Auteur(s): | Aksil, Tounsia Abbas, Moussa Trari, Mohamed |
Mots-clés: | Crown of oak Iodine isotherm Modelling removal Thermodynamic |
Date de publication: | 2024 |
Editeur: | Taylor & Francis |
Collection/Numéro: | Chemistry and Ecology(2024); |
Résumé: | The current study aims to develop a new adsorbent material using oak crown and explore its effectiveness in removing I2 ions through a series of batch experiments. ACOW was characterised by zero charge (pHpzc) and FTIR spectroscopy. The impact of the initial I2 concentration (20-100 mg/L), temperature (25-55 °C), pH (2-14), adsorbent dosage (2-10 g/L), Stirring speed (100-900 rpm), particle size (100-2000μm) and contact time (0-30 min) on I2 adsorption was examined. The adsorption kinetic obeys the pseudo-second order model with a determination coefficient (R2) equal to 0.999. Adsorption follows the Langmuir equation well, with the best fit to the experimental data at equilibrium. A qmax value (= 103.606 mg/g) at 25°C and 120.773 mg/g at 55°C were eliminated under the optimised conditions, indicating homogeneous adsorption on the surface of the adsorbent. The thermodynamic parameters gave a negative free energy ΔGo (-3.445 to -5.629 kJ/mol), a positive enthalpy ΔHo (18.406 kJ/mol) and an activation energy Ea (= 22.599 kJ/mol), thus confirming the spontaneous and endothermic nature of adsorption of iodine on ACOW. The positive entropy ΔSo (0.0733 kJ/mol K) show increased randomness of the solid-liquid interface during the adsorption. |
URI/URL: | https://www.tandfonline.com/doi/full/10.1080/02757540.2024.2383622 https://doi.org/10.1080/02757540.2024.2383622 http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/14263 |
ISSN: | 0275-7540 |
Collection(s) : | Publications Internationales
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