Taghavi Mahmoud, Zazouli Mohammad Ali, Yousefi Zabihollah, Akbari-adergani Behrouz
Department of Environmental Health Engineering, Faculty of Health, Zabol University of Medical Sciences, Zabol, Iran.
Department of Environmental Health Engineering, Faculty of Health and Health Sciences Research Center, Mazandaran University of Medical Sciences, Sari, Iran.
Environ Monit Assess. 2015 Nov;187(11):682. doi: 10.1007/s10661-015-4911-x. Epub 2015 Oct 9.
In this study, multi-walled carbon nanotubes were functionalized by L-cysteine to show the kinetic and isotherm modeling of Cd (II) ions onto L-cysteine functionalized multi-walled carbon nanotubes. The adsorption behavior of Cd (II) ion was studied by varying parameters including dose of L-MWCNTs, contact time, and cadmium concentration. Equilibrium adsorption isotherms and kinetics were also investigated based on Cd (II) adsorption tests. The results showed that an increase in contact time and adsorbent dosage resulted in increase of the adsorption rate. The optimum condition of the Cd (II) removal process was found at pH=7.0, 15 mg/L L-MWCNTs dosage, 6 mg/L cadmium concentration, and contact time of 60 min. The removal percent was equal to 89.56 at optimum condition. Langmuir and Freundlich models were employed to analyze the experimental data. The data showed well fitting with the Langmuir model (R2=0.994) with q max of 43.47 mg/g. Analyzing the kinetic data by the pseudo-first-order and pseudo-second-order equations revealed that the adsorption of cadmium using L-MWSNTs following the pseudo-second-order kinetic model with correlation coefficients (R2) equals to 0.998, 0.992, and 0.998 for 3, 6, and 9 mg/L Cd (II) concentrations, respectively. The experimental data fitted very well with the pseudo-second-order. Overall, treatment of polluted solution to Cd (II) by adsorption process using L-MWCNT can be considered as an effective technology.
在本研究中,通过L-半胱氨酸对多壁碳纳米管进行功能化处理,以展示Cd(II)离子在L-半胱氨酸功能化多壁碳纳米管上的动力学和等温线模型。通过改变包括L-MWCNTs剂量、接触时间和镉浓度等参数,研究了Cd(II)离子的吸附行为。基于Cd(II)吸附试验,还研究了平衡吸附等温线和动力学。结果表明,接触时间和吸附剂用量的增加导致吸附率的提高。在pH = 7.0、L-MWCNTs用量15 mg/L、镉浓度6 mg/L和接触时间60 min的条件下,发现了Cd(II)去除过程的最佳条件。在最佳条件下去除率等于89.56。采用Langmuir和Freundlich模型分析实验数据。数据显示与Langmuir模型拟合良好(R2 = 0.994),q max为43.47 mg/g。用准一级和准二级方程分析动力学数据表明,使用L-MWSNTs吸附镉遵循准二级动力学模型,对于3、6和9 mg/L Cd(II)浓度,相关系数(R2)分别等于0.998、0.992和0.998。实验数据与准二级方程拟合得非常好。总体而言,使用L-MWCNT通过吸附过程处理含Cd(II)的污染溶液可被视为一种有效的技术。