Fontecha-Cámara M A, López-Ramón M V, Pastrana-Martínez L M, Moreno-Castilla C
Departamento de Química Inorgánica y Orgánica, Facultad de Ciencias Experimentales, Universidad de Jaén, Jaén, Spain.
J Hazard Mater. 2008 Aug 15;156(1-3):472-7. doi: 10.1016/j.jhazmat.2007.12.043. Epub 2007 Dec 23.
A study was conducted on the adsorption kinetics of diuron and amitrole from aqueous solutions on activated carbons of different particle sizes and on an activated carbon fiber. Different kinetic models were applied to the experimental results obtained. A pseudo-second-order rate equation fitted the adsorption kinetics data better than a pseudo-first-order rate equation. Amitrole showed faster adsorption kinetics compared with diuron because of the smaller size of the former herbicide, despite its lower driving force for adsorption. Both reaction rate constants increased when the particle size decreased. The activated carbon fiber and the activated carbon of smallest particle size (0.03 mm) showed similar adsorption kinetics. The intraparticle diffusion rate constant increased with higher initial concentration of herbicides in solution and with lower particle size of the adsorbent. This is because the rise in initial concentration increased the amount adsorbed at equilibrium, and the reduction in particle size increased the number of collisions between adsorbate and adsorbent particles. Demineralization of the activated carbon with particle size of 0.5mm had practically no effect on the adsorption kinetics.
开展了一项关于从水溶液中吸附敌草隆和杀草强到不同粒径活性炭及活性炭纤维上的吸附动力学研究。将不同的动力学模型应用于所获得的实验结果。与拟一级速率方程相比,拟二级速率方程能更好地拟合吸附动力学数据。尽管杀草强的吸附驱动力较低,但由于其尺寸较小,与敌草隆相比,它表现出更快的吸附动力学。当粒径减小时,两个反应速率常数均增加。活性炭纤维和最小粒径(0.03mm)的活性炭表现出相似的吸附动力学。颗粒内扩散速率常数随着溶液中除草剂初始浓度的升高以及吸附剂粒径的减小而增加。这是因为初始浓度的升高增加了平衡时的吸附量,而粒径的减小增加了吸附质与吸附剂颗粒之间的碰撞次数。粒径为0.5mm的活性炭脱矿质对吸附动力学几乎没有影响。