Chemical Engineering & Technology · 2004 · 121 citations · 22 references
EngineeringAdsorption ProcessChemical ContaminantWastewater TreatmentChemical EngineeringEnvironmental ChemistrySeparation ScienceWater TreatmentAdvanced SeparationChemisorptionAdsorptionDate PitsAqueous SolutionsWaste ManagementCarbonizationActivated CarbonsEnvironmental EngineeringActivated Date PitsEnvironmental RemediationWater PurificationActivated Carbon
Abstract Activated carbons prepared from date pits, an agricultural waste byproduct, have been examined for the adsorption of phenol from aqueous solutions. The activated carbons were prepared using a fluidized bed reactor in two steps; carbonization at 700 °C for 2 hours in N 2 atmosphere and activation at 900 °C in CO 2 atmosphere. The kinetic data were fitted to the models of intraparticle diffusion, pseudo‐second order, and Lagergren, and followed more closely the pseudo‐second‐order chemisorption model. The isotherm equilibrium data were well fitted by the Freundlich and Langmuir models. The maximum adsorption capacity of activated date pits per Langmuir model was 16 times higher than that of nonactivated date pits. The thermodynamic properties calculated revealed the endothermic nature of the adsorption process. The uptake of phenol increased with increasing initial phenol concentration from10 to 200 ppm and temperature from 25 to 55 °C, and decreased with increasing the solution pH from 4 to 12. The uptake of phenol was not affected by the presence of NaCl salt.
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Adsorption of phenol by bentonite
Fawzi Banat, Bilal Al-Bashir, Sameer Al‐Asheh et al. · Environmental Pollution · 2000 · 557 citations
Chemical Engineering, Environmental Chemistry, Engineering +4
Sorption Studies of Acid Dye by Mixed Sorbents
Yuh‐Shan Ho, Chih-Chieh Chiang · Adsorption · 2001 · 425 citations