首页> 外文期刊>International journal of applied mechanics >Comparing the Adsorption Performance of Multiwalled Carbon Nanotubes Oxidized by Varying Degrees for Removal of Low Levels of Copper, Nickel and Chromium(VI) from Aqueous Solutions
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Comparing the Adsorption Performance of Multiwalled Carbon Nanotubes Oxidized by Varying Degrees for Removal of Low Levels of Copper, Nickel and Chromium(VI) from Aqueous Solutions

机译:从水溶液中除去不同程度的多壁碳纳米管的吸附性能,从水溶液中去除低水平的铜,镍和铬(VI)

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Functionalized multiwalled carbon nanotubes (MWCNTs) have drawn wide attention in recent years as novel materials for the removal of heavy metals from the aquatic media. This paper investigates the effect that the functionalization (oxidation) process duration time (3 h or 6 h) has on the ability of MWCNTs to treat water contaminated with low levels of Cu(II), Ni(II) and Cr(VI) (initial concentrations 0.5-5 mg L-1) and elucidates the adsorption mechanisms involved. Adsorbent characterization showed that the molar ratio of C and O in these materials was slightly lower for the oxMWCNT6h, due to the higher degree of oxidation, but the specific surface areas and mesopore volumes of these materials were very similar, suggesting that prolonging the functionalization duration had an insignificant effect on the physical characteristics of oxidized multiwalled carbon nanotubes (oxMWCNTs). Increasing the Ph of the solutions from Ph 2 to Ph 8 had a large positive impact on the removal of Cu(II) and Ni(II) by oxMWCNT, but reduced the adsorption of Cr(VI). However, the ionic strength of the solutions had far less pronounced effects. Coupled with the results of fitting the kinetics data to the Elowich and Weber-Morris models, we conclude that adsorption of Cu(II) and Ni(II) is largely driven by electrostatic interactions and surface complexation at the interface of the adsorbate/adsorbent system, whereas the slower adsorption of Cr(VI) on the oxMWCNTs investigated is controlled by an additional chemisorption step where Cr(VI) is reduced to Cr(III). Both oxMWCNT3h and oxMWCNT6h have high adsorption affinities for the heavy metals investigated, with adsorption capacities (expressed by the Freundlich coefficient K-F) ranging from 1.24 to 13.2 (mg g(-1))/(mg l(-1))(n), highlighting the great potential such adsorbents have in the removal of heavy metals from aqueous solutions.
机译:近年来,近年来,官能化的多壁碳纳米管(MWCNT)旨在作为从水生介质中除去重金属的新材料。本文研究了官能化(氧化)过程持续时间(3 h或6 h)对Mwcnts治疗低水平的Cu(II),Ni(II)和Cr(VI)(初始浓度为0.5-5mg L-1)并阐明所涉及的吸附机制。吸附剂表征显示,由于氧化程度较高,但是这些材料中,这些材料中的C和O的摩尔比略低,但是这些材料的比表面积和中孔体积非常相似,表明延长官能化持续时间对氧化多壁碳纳米管(OXMWCNT)的物理特性进行了微不足道的影响。将来自pH 2至pH 8的溶液的pH增加对通过OxmWNT除去Cu(II)和Ni(II)的阳性阳性抗冲击,但减少了Cr(VI)的吸附。然而,溶液的离子强度远不太明显的效果。结合将动力学数据拟合到ELOWICH和Weber-Morris模型的结果,我们得出结论,Cu(II)和Ni(II)的吸附在很大程度上是通过吸附剂/吸附系统的界面处的静电相互作用和表面络合来驱动,而研究的Cr(vi)对Oxmwnts的较慢吸附是通过另外的化学吸附步骤来控制,其中Cr(vi)还原为Cr(iii)。 OxmWCNT3H和OxMWCNT6H两者都具有高吸附亲和力,用于研究重金属,吸附容量(由Freundlich系数KF表示)从1.24-13.2(Mg G(-1))/(Mg L(-1))(N) ,突出巨大的潜在这种吸附剂在从水溶液中除去重金属。

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