Department of Chemical Engineering, University of Guilan, Rasht 4199613776, Iran.
School of Chemical, Petroleum and Gas Engineering, Iran University of Science and Technology, Tehran 13114-16846, Iran.
J Hazard Mater. 2021 Aug 15;416:125923. doi: 10.1016/j.jhazmat.2021.125923. Epub 2021 Apr 20.
The hyper-cross-linked polymers (HCPs) based on the polystyrene was synthesized during the Friedel-Craft reaction in various situations. The HCPs synthesis were carried out in various operating conditions including reaction time in the range of 3-23 h, the ratio of cross-linker to monomer in range of 1-5 at temperature of 80 ℃. In addition, the cadmium adsorption process was carried out at a temperature in the range of 25-85 ℃ and initial cadmium concentration in the range of 10-100 mg/L. The response surface methodology (RSM) has been applied for optimizing the process using synthesis and adsorption parameters. The optimized synthesis conditions were obtained 3.32, 11.26 h, 80 ℃, in ratio, synthesis time, and temperature, respectively. Also, the optimized adsorption conditions were obtained 80 mg/L and 35 ℃, initial cadmium ion concentration, and temperature, respectively. The surface area and thermal stability were obtained at 853.89 m/g and 450 ℃, respectively. The maximum adsorption capacity and removal efficiency had been obtained 950 mg/g and 92% at a temperature of 20 ℃, after 80 min, respectively. The maximum adsorption capacity and removal efficiency were observed in the initial concentration of 120 mg/L and 10 mg/L, respectively. The adsorption process behavior was surveyed using isotherm, kinetic and thermodynamic models. The isotherm results showed that the adsorption of cadmium by HCPs is multi-layer and heterogeneous. The thermodynamic parameters showed that the process is exothermic and spontaneous. Finally, the kinetic results showed that the process occurred physically and slowly as the temperature raised.
基于聚苯乙烯的超交联聚合物(HCPs)是在各种条件下通过傅克反应合成的。HCPs 的合成是在各种操作条件下进行的,包括反应时间为 3-23 h,交联剂与单体的比例为 1-5,温度为 80℃。此外,在 25-85℃的温度和 10-100mg/L 的初始镉浓度下进行镉吸附过程。响应面法(RSM)已应用于优化使用合成和吸附参数的工艺。优化的合成条件分别为 3.32、11.26 h、80℃、配比、合成时间和温度。此外,优化的吸附条件分别为 80mg/L 和 35℃、初始镉离子浓度和温度。表面积和热稳定性分别为 853.89 m2/g 和 450℃。在 20℃、80 min 后,最大吸附容量和去除效率分别达到 950mg/g 和 92%。在初始浓度为 120mg/L 和 10mg/L 时,观察到最大吸附容量和去除效率。采用等温线、动力学和热力学模型研究了吸附过程行为。等温线结果表明,HCPs 对镉的吸附是多层和非均相的。热力学参数表明,该过程是放热和自发的。最后,动力学结果表明,随着温度的升高,该过程是物理的且缓慢发生的。