Evaluation of pyrolyzed areca husk as a potential adsorbent for the removal of Fe2+ ions from aqueous solutions

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Date

2019

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Academic Press

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Keywords

Adsorption, Adsorption isotherm & kinetic, Adsorption mechanism, Areca husk, Iron removal, Potential adsorbents, Chemicals removal (water treatment), adsorbent, iron, adsorption, aqueous solution, cation, plant residue, pollutant removal, pyrolysis, reaction kinetics, Areca, Article, comparative study, complex formation, concentration (parameter), contact time, controlled study, desorption, metal recovery, nonhuman, particle size, pore size distribution, pore volume, precipitation, rate constant, rice husk, surface area, surface charge, thermodynamics, kinetics, pH, solution and solubility, temperature, water pollutant, Hydrogen-Ion Concentration, Kinetics, Solutions, Temperature, Thermodynamics, Water Pollutants, Chemical

Citation

Journal of Environmental Management, 2019, 246, , pp. 345-354

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