International Balkan University, Samoilova 10, 1000 Skopje, Republic of Macedonia.
Water Sci Technol. 2010;62(5):1136-42. doi: 10.2166/wst.2010.918.
The kinetics of zinc, cadmium, and lead ions removal by natural zeolite-clinoptilolite has been investigated using an agitated batch adsorber. Batch experiments at constant temperature have been performed. The influence of agitation speed, initial heavy metals concentration and particle size of the sorbent on the removal efficiency of heavy metals from liquid phase have been studied. A decrease in the initial heavy metals concentration in aqueous solutions prolongs the time needed for equilibrium. Two kinetics models according to the Vermeulen's approximation and the parabolic diffusion model have been tested with the experimental data for adsorption of heavy metals onto natural zeolite. For the systems examined, the fit of the proposed models with the experimental data was shown to be equally good using both models. The diffusion coefficients are calculated from kinetic models of heavy metal ions and they are of the order from 10(-5) to 10(-6) cm(2)/min. The diffusion coefficients depend on initial concentration for both models.
采用搅拌式间歇吸附器研究了天然沸石-斜发沸石去除锌、镉和铅离子的动力学。在恒温下进行间歇实验。研究了搅拌速度、初始重金属浓度和吸附剂粒径对重金属从液相中去除效率的影响。水溶液中初始重金属浓度的降低延长了达到平衡所需的时间。根据 Vermeulen 近似和抛物线扩散模型,对两种动力学模型进行了测试,以验证重金属在天然沸石上的吸附实验数据。对于所研究的体系,两种模型均能很好地拟合实验数据。从重金属离子的动力学模型计算得到扩散系数,其范围为 10(-5) 到 10(-6) cm(2)/min。对于两种模型,扩散系数均取决于初始浓度。