Akdeniz University, Faculty of Science, Department of Chemistry, 07058, Antalya, Turkey.
Akdeniz University, Faculty of Science, Department of Chemistry, 07058, Antalya, Turkey.
Environ Pollut. 2019 Jan;244:723-732. doi: 10.1016/j.envpol.2018.10.071. Epub 2018 Oct 18.
In this study, carbon nanotube-based adsorbents, oxidized multi-walled carbon nanotube (OMWCNT) with non-magnetic property and OMWCNT-FeO and OMWCNT-κ-carrageenan-FeO nanocomposites with magnetic property, having different structural and surface properties were prepared and their adsorptive properties for the removal of toxic diquat dibromide (DQ) herbicide from water by adsorption were determined in detail. For each adsorption system, the effects of initial DQ concentration, contact time and temperature on the adsorption processes were determined. Equilibrium time was found to be 300 min for DQ solutions. OMWCNT showed faster adsorption and higher maximum adsorption capacity value than magnetic adsorbents. With increasing initial herbicide concentration from 5.43 mg.L to 16.3 mg.L, the values of initial sorption rate exhibited a decrease from 29.1 mg.g.min to 4.28 mg.g.min for OMWCNT-DQ system, from 1.21 mg.g.min to 0.823 mg.g.min for OMWCNT-FeO-DQ system and from 0.674 mg.g.min to 0.612 mg.g.min OMWCNT-κ-carrageenan-FeO system. Maximum adsorption capacity value of OMWCNT was approximately 2.8-fold higher than magnetic OMWCNT-FeO and 5.4-fold higher than magnetic OMWCNT-κ-carrageenan-FeO at 25 °C. Adsorption kinetic and isotherm data obtained for all adsorption systems were well-fitted by pseudo second-order and Langmuir models, respectively. Thermodynamic parameters indicated that the adsorption of DQ onto carbon nanotube-based adsorbents was spontaneous and endothermic process. Furthermore, OMWCNT having the highest herbicide adsorption capacity could be regenerated and reused at least five times. This study showed that carbon nanotube-based adsorbents with magnetic and non-magnetic property were of high adsorption performance for the removal of DQ from water and could be promising adsorbent materials for the efficient removal of herbicides from wastewaters.
在这项研究中,制备了具有不同结构和表面性质的基于碳纳米管的吸附剂、具有非磁性的氧化多壁碳纳米管(OMWCNT)和具有磁性的 OMWCNT-FeO 和 OMWCNT-κ-卡拉胶-FeO 纳米复合材料,并详细研究了它们通过吸附从水中去除有毒敌草快二溴化物(DQ)除草剂的吸附性能。对于每个吸附系统,确定了初始 DQ 浓度、接触时间和温度对吸附过程的影响。发现 DQ 溶液的平衡时间为 300 分钟。OMWCNT 的吸附速度更快,最大吸附容量值高于磁性吸附剂。随着初始除草剂浓度从 5.43mg.L 增加到 16.3mg.L,OMWCNT-DQ 体系的初始吸附速率值从 29.1mg.g.min 下降到 4.28mg.g.min,OMWCNT-FeO-DQ 体系从 1.21mg.g.min 下降到 0.823mg.g.min,OMWCNT-κ-卡拉胶-FeO 体系从 0.674mg.g.min 下降到 0.612mg.g.min。在 25°C 时,OMWCNT 的最大吸附容量值比磁性 OMWCNT-FeO 高约 2.8 倍,比磁性 OMWCNT-κ-卡拉胶-FeO 高约 5.4 倍。所有吸附系统的吸附动力学和吸附等温线数据均通过拟二级和朗缪尔模型得到很好的拟合。热力学参数表明,DQ 吸附到基于碳纳米管的吸附剂上是自发的和吸热过程。此外,具有最高除草剂吸附能力的 OMWCNT 可以至少再生和重复使用五次。这项研究表明,具有磁性和非磁性的基于碳纳米管的吸附剂对水中 DQ 的去除具有较高的吸附性能,并且可能是从废水中有效去除除草剂的有前途的吸附材料。