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Adsorption of Pyrene from Aqueous Solution by Clay and Sandy Soil

Adsorption of Pyrene from Aqueous Solution by Clay and Sandy Soil
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摘要 The adsorption behaviour of pyrene using clay and sandy soil under ambient conditions is investigated in this study. Adsorption equilibrium isotherms and adsorption kinetics experiments were carried out in solutions of pyrene concentrations (50 - 250 mg/l) by using clay and sandy soil as adsorbents. Adsorption models were used to predict the mechanisms involved. The adsorption kinetics data best fitted the pseudo-second order kinetic model. The isotherm model which best represented the data obtained was the Langmuir model. The adsorption from the aqueous solution was observed to be time dependent and equilibrium time was found to be 34 and 28 hours for clay and sandy soil, respectively. The rate of adsorption using the pseudo-second order rate expression for pyrene was 0.00088 and 0.00085 min-1 for clay and sandy soil, respectively. The adsorption behaviour of pyrene using clay and sandy soil under ambient conditions is investigated in this study. Adsorption equilibrium isotherms and adsorption kinetics experiments were carried out in solutions of pyrene concentrations (50 - 250 mg/l) by using clay and sandy soil as adsorbents. Adsorption models were used to predict the mechanisms involved. The adsorption kinetics data best fitted the pseudo-second order kinetic model. The isotherm model which best represented the data obtained was the Langmuir model. The adsorption from the aqueous solution was observed to be time dependent and equilibrium time was found to be 34 and 28 hours for clay and sandy soil, respectively. The rate of adsorption using the pseudo-second order rate expression for pyrene was 0.00088 and 0.00085 min-1 for clay and sandy soil, respectively.
机构地区 School of Energy
出处 《Advances in Chemical Engineering and Science》 2015年第4期476-483,共8页 化学工程与科学期刊(英文)
关键词 PYRENE ADSORPTION Isotherms ADSORPTION Kinetics Pseudo-Second Order Pyrene Adsorption Isotherms Adsorption Kinetics Pseudo-Second Order
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