Şenol Sert - Academia.edu (original) (raw)

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Papers by Şenol Sert

Research paper thumbnail of Biosorption of Ce(III) onto modified Pinus brutia leaf powder using central composite design

The biosorption of Ce(III) from aqueous solution by citric acid-modified Pinus brutia leaf powder... more The biosorption of Ce(III) from aqueous solution by citric acid-modified Pinus brutia leaf powder was studied in a batch system as a function of initial pH, temperature, initial concentration of adsorbate, and contact time. Central composite design method was used in the experiments. Thermodynamic parameters such as standard enthalpy (ΔH 0), entropy (ΔS 0), and free energy (ΔG 0) were calculated, and the results indicated that biosorption was exothermic. The biosorption of Ce(III) on modified Pinus brutia leaf powder was investigated by Freundlich, Langmuir, and Dubinin-Radushkevich (D-R) isotherms. The results show that Ce(III) adsorption can be explained by Langmuir isotherm model, and monolayer capacity was found as 62.1 mg/g. The results suggested that the modification process enhances the biosorption capacity of the adsorbent, and modified Pinus brutia leaf powder may find promising applications for the recovery of Ce(III) from aqueous effluents.

Research paper thumbnail of Biosorption of Ce(III) onto modified Pinus brutia leaf powder using central composite design

Wood Science and Technology, 2012

The biosorption of Ce(III) from aqueous solution by citric acid-modified Pinus brutia leaf powder... more The biosorption of Ce(III) from aqueous solution by citric acid-modified Pinus brutia leaf powder was studied in a batch system as a function of initial pH, temperature, initial concentration of adsorbate, and contact time. Central composite design method was used in the experiments. Thermodynamic parameters such as standard enthalpy (ΔH 0), entropy (ΔS 0), and free energy (ΔG 0) were calculated, and the results indicated that biosorption was exothermic. The biosorption of Ce(III) on modified Pinus brutia leaf powder was investigated by Freundlich, Langmuir, and Dubinin-Radushkevich (D-R) isotherms. The results show that Ce(III) adsorption can be explained by Langmuir isotherm model, and monolayer capacity was found as 62.1 mg/g. The results suggested that the modification process enhances the biosorption capacity of the adsorbent, and modified Pinus brutia leaf powder may find promising applications for the recovery of Ce(III) from aqueous effluents.

Research paper thumbnail of Biosorption of lanthanum and cerium from aqueous solutions by Platanus orientalis leaf powder

Research paper thumbnail of Preparation of ZrO2 and ZrO2–TiO2 microspheres by the sol–gel method and an experimental design approach to their strontium adsorption behaviours

Chemical Engineering Journal, 2010

Research paper thumbnail of Uranium adsorption studies on aminopropyl modified mesoporous sorbent (NH2-MCM-41) using statistical design method

Research paper thumbnail of Factors Affecting Lanthanum and Cerium Biosorption on Pinus brutia Leaf Powder

Separation Science and Technology, 2010

Research paper thumbnail of Biosorption of Ce(III) onto modified Pinus brutia leaf powder using central composite design

The biosorption of Ce(III) from aqueous solution by citric acid-modified Pinus brutia leaf powder... more The biosorption of Ce(III) from aqueous solution by citric acid-modified Pinus brutia leaf powder was studied in a batch system as a function of initial pH, temperature, initial concentration of adsorbate, and contact time. Central composite design method was used in the experiments. Thermodynamic parameters such as standard enthalpy (ΔH 0), entropy (ΔS 0), and free energy (ΔG 0) were calculated, and the results indicated that biosorption was exothermic. The biosorption of Ce(III) on modified Pinus brutia leaf powder was investigated by Freundlich, Langmuir, and Dubinin-Radushkevich (D-R) isotherms. The results show that Ce(III) adsorption can be explained by Langmuir isotherm model, and monolayer capacity was found as 62.1 mg/g. The results suggested that the modification process enhances the biosorption capacity of the adsorbent, and modified Pinus brutia leaf powder may find promising applications for the recovery of Ce(III) from aqueous effluents.

Research paper thumbnail of Biosorption of Ce(III) onto modified Pinus brutia leaf powder using central composite design

Wood Science and Technology, 2012

The biosorption of Ce(III) from aqueous solution by citric acid-modified Pinus brutia leaf powder... more The biosorption of Ce(III) from aqueous solution by citric acid-modified Pinus brutia leaf powder was studied in a batch system as a function of initial pH, temperature, initial concentration of adsorbate, and contact time. Central composite design method was used in the experiments. Thermodynamic parameters such as standard enthalpy (ΔH 0), entropy (ΔS 0), and free energy (ΔG 0) were calculated, and the results indicated that biosorption was exothermic. The biosorption of Ce(III) on modified Pinus brutia leaf powder was investigated by Freundlich, Langmuir, and Dubinin-Radushkevich (D-R) isotherms. The results show that Ce(III) adsorption can be explained by Langmuir isotherm model, and monolayer capacity was found as 62.1 mg/g. The results suggested that the modification process enhances the biosorption capacity of the adsorbent, and modified Pinus brutia leaf powder may find promising applications for the recovery of Ce(III) from aqueous effluents.

Research paper thumbnail of Biosorption of lanthanum and cerium from aqueous solutions by Platanus orientalis leaf powder

Research paper thumbnail of Preparation of ZrO2 and ZrO2–TiO2 microspheres by the sol–gel method and an experimental design approach to their strontium adsorption behaviours

Chemical Engineering Journal, 2010

Research paper thumbnail of Uranium adsorption studies on aminopropyl modified mesoporous sorbent (NH2-MCM-41) using statistical design method

Research paper thumbnail of Factors Affecting Lanthanum and Cerium Biosorption on Pinus brutia Leaf Powder

Separation Science and Technology, 2010

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