Ada Kezban, Ergene Aysun, Tan Sema, Yalçin Emine
Department of Chemistry, Faculty of Arts and Sciences, Kirikkale University, Yahşihan-Kirikkale, Turkey.
J Hazard Mater. 2009 Jun 15;165(1-3):637-44. doi: 10.1016/j.jhazmat.2008.10.036. Epub 2008 Oct 18.
Zinc oxide powders with six-sided flake-like particles were prepared by homogeneous precipitation from boiling aqueous solutions that contained excess urea and 0.075 (Z075) and 0.300 (Z300)M Zn(2+). The average sizes of the particles are 37 and 46 microm, while the average sizes of the crystals are approximately 45 for Z075 and Z300 at 1000 degrees C. Equilibrium, kinetic and thermodynamic studies were carried out for the adsorption of RBBR dye from aqueous solution using both types of ZnO in the form of fine powders. The effects of pH, initial dye concentration, contact time and temperature of solution on the adsorption were studied. Langmuir, Temkin and Dubinin-Radushkevich (D-R) isotherm models were used to describe the adsorption of RBBR onto ZnO powders. The Langmuir and D-R isotherm models fit the equilibrium data better than the Temkin isotherm model. The monomolecular adsorption capacity of Z075 and Z300 was determined to be 190 and 345 mg g(-1) for RBBR, respectively. The Lagergren first-order, Ritchie second-order kinetic and intra-particle diffusion models were used for the adsorption of the dye onto ZnO powders. The Ritchie second-order model was suitable for describing the adsorption kinetics for the removal of RBBR from aqueous solution onto Z075 and Z300. Thermodynamic parameters, such as the Gibbs free energy (DeltaG(#)), enthalpy (DeltaH(#)), entropy (DeltaS(#)) and equilibrium constant of activation (K(#)) were calculated. These parameters showed that the adsorption process of RBBR onto Z075 and Z300 was an endothermic process of a chemical nature under the studied conditions.
通过在含有过量尿素以及0.075(Z075)和0.300(Z300)M Zn²⁺的沸腾水溶液中进行均匀沉淀,制备了具有六面片状颗粒的氧化锌粉末。颗粒的平均尺寸为37和46微米,而在1000℃下,Z075和Z300晶体的平均尺寸约为45。使用两种细粉形式的ZnO对水溶液中RBBR染料的吸附进行了平衡、动力学和热力学研究。研究了溶液的pH值、初始染料浓度、接触时间和温度对吸附的影响。采用Langmuir、Temkin和Dubinin-Radushkevich(D-R)等温线模型描述RBBR在ZnO粉末上的吸附。Langmuir和D-R等温线模型比Temkin等温线模型更能拟合平衡数据。对于RBBR,Z075和Z300的单分子吸附容量分别确定为190和345 mg g⁻¹。采用Lagergren一级、Ritchie二级动力学和颗粒内扩散模型研究染料在ZnO粉末上的吸附。Ritchie二级模型适用于描述从水溶液中去除RBBR到Z075和Z300上的吸附动力学。计算了热力学参数,如吉布斯自由能(ΔG⁰)、焓(ΔH⁰)、熵(ΔS⁰)和活化平衡常数(K⁰)。这些参数表明,在所研究的条件下,RBBR在Z075和Z300上的吸附过程是一个具有化学性质的吸热过程。