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冷等离子体氧化多壁碳纳米管上增强的染料吸附:一项对比研究。

Enhanced Dye Adsorption on Cold Plasma-Oxidized Multi-Walled Carbon Nanotubes: A Comparative Study.

作者信息

Skourti Anastasia, Giannoulia Stefania, Daletou Maria K, Aggelopoulos Christos A

机构信息

Laboratory of Cold Plasma and Advanced Techniques for Improving Environmental Systems, Institute of Chemical Engineering Sciences, Foundation for Research and Technology Hellas (FORTH/ICE-HT), 26504 Patras, Greece.

Laboratory of Advanced Materials and Electrochemical Energy Conversion Devices, Institute of Chemical Engineering Sciences, Foundation for Research and Technology Hellas (FORTH/ICE-HT), 26504 Patras, Greece.

出版信息

Nanomaterials (Basel). 2024 Aug 1;14(15):1298. doi: 10.3390/nano14151298.

Abstract

The oxidation of multi-walled carbon nanotubes (MWCNTs) using cold plasma was investigated for their subsequent use as adsorbents for the removal of dyes from aqueous solutions. The properties of MWCNTs after plasma modification and their adsorption capacities were compared with pristine and chemically oxidized nanotubes. The modification process employed a reactor where plasma was generated through dielectric barrier discharges (DBD) powered by high-voltage nanosecond pulses. Various modification conditions were examined, such as processing time and pulse voltage amplitude. The degree of oxidation and the impact on the chemistry and structure of the nanotubes was investigated through various physicochemical and morphological characterization techniques (XPS, BET, TEM, etc.). Maximum oxidation (O/C = 0.09 from O/C = 0.02 for pristine MWCNTs) was achieved after 60 min of nanopulsed-DBD plasma treatment. Subsequently, the modified nanotubes were used as adsorbents for the removal of the dye methylene blue (MB) from water. The adsorption experiments examined the effects of contact time between the adsorbent and MB, as well as the initial dye concentration in water. The plasma-modified nanotubes exhibited high MB removal efficiency, with adsorption capacity proportional to the degree of oxidation. Notably, their adsorption capacity significantly increased compared to both pristine and chemically oxidized MWCNTs (~54% and ~9%, respectively). Finally, the kinetics and mechanism of the adsorption process were studied, with experimental data fitting well to the pseudo-second-order kinetic model and the Langmuir isotherm model. This study underscores the potential of plasma technology as a low-cost and environmentally friendly approach for material modification and water purification.

摘要

研究了利用冷等离子体氧化多壁碳纳米管(MWCNT),以便随后将其用作从水溶液中去除染料的吸附剂。将等离子体改性后的MWCNT的性质及其吸附容量与原始和化学氧化的纳米管进行了比较。改性过程采用了一个反应器,通过由高压纳秒脉冲驱动的介质阻挡放电(DBD)产生等离子体。研究了各种改性条件,如处理时间和脉冲电压幅度。通过各种物理化学和形态表征技术(XPS、BET、TEM等)研究了氧化程度以及对纳米管化学和结构的影响。在纳秒脉冲DBD等离子体处理60分钟后实现了最大氧化(原始MWCNT的O/C从0.02变为0.09)。随后,将改性后的纳米管用作从水中去除染料亚甲基蓝(MB)的吸附剂。吸附实验研究了吸附剂与MB之间的接触时间以及水中初始染料浓度的影响。等离子体改性的纳米管表现出高的MB去除效率,吸附容量与氧化程度成正比。值得注意的是,与原始和化学氧化的MWCNT相比,它们的吸附容量显著增加(分别约为54%和9%)。最后,研究了吸附过程的动力学和机理,实验数据很好地拟合了伪二级动力学模型和朗缪尔等温线模型。这项研究强调了等离子体技术作为一种低成本且环境友好的材料改性和水净化方法的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12fb/11314139/9c980f085dda/nanomaterials-14-01298-g001.jpg

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