Department of Mining & Metallurgical Eng., Amirkabir University of Technology, Tehran, Iran.
Department of Mining & Metallurgical Eng., Amirkabir University of Technology, Tehran, Iran.
J Environ Manage. 2018 Dec 1;227:277-285. doi: 10.1016/j.jenvman.2018.08.089. Epub 2018 Sep 7.
In this study, activated red mud (ARM) was used as a new adsorbent for the removal of ferricyanide anions from aqueous solution. Based on the percentage of ferricyanide removal and ferricyanide adsorption capacity, optimum conditions were evaluated using the response surface method (RSM) and central composite design (CCD). In optimum conditions (pH = 5.6, adsorbent dosage of 2.59 g, ferricyanide concentration of 60 ppm and contact time of 60 min), the percentage of ferricyanide removal and ferricyanide adsorption capacity were obtained as 79.6% and 1.8 mg/g, respectively. The kinetics and equilibrium studies were evaluated by considering the effective parameters including pH and ferricyanide concentration. Kinetic studies were evaluated by kinetic models of pseudo first-order, pseudo-second-order (four different linearized forms), Elovich and intraparticle diffusion. The results of the kinetic study indicated that the mechanism of ferricyanide adsorption onto the ARM adsorbent is a chemisorption interaction by a fast ferricyanide adsorption onto ARM and subsequently the slow diffusion of ferricyanide ions into the ARM inner adsorption sites. The equilibrium studies showed that the adsorption process followed the Langmuir model in which ferricyanide adsorption onto ARM was homogeneous with monolayer adsorption. The results indicated that the activation process of red mud improved adsorbent efficiency and increased the adsorption capacity.
在这项研究中,活化赤泥(ARM)被用作一种新的吸附剂,用于从水溶液中去除铁氰化物阴离子。基于铁氰化物去除率和铁氰化物吸附容量的百分比,使用响应面法(RSM)和中心复合设计(CCD)评估了最佳条件。在最佳条件(pH=5.6、吸附剂用量 2.59 g、铁氰化物浓度 60 ppm 和接触时间 60 min)下,铁氰化物去除率和铁氰化物吸附容量分别达到 79.6%和 1.8 mg/g。通过考虑包括 pH 值和铁氰化物浓度在内的有效参数,评估了动力学和平衡研究。动力学研究通过准一级、准二级(四种不同的线性化形式)、Elovich 和内扩散的动力学模型进行评估。动力学研究的结果表明,铁氰化物吸附到 ARM 吸附剂上的机制是通过快速将铁氰化物吸附到 ARM 上,然后铁氰化物离子缓慢扩散到 ARM 内部吸附位的化学吸附相互作用。平衡研究表明,吸附过程遵循 Langmuir 模型,其中铁氰化物在 ARM 上的吸附是均匀的单层吸附。结果表明,赤泥的活化过程提高了吸附剂的效率并增加了吸附容量。