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MXene 基复合材料在吸附和光催化去除工业废水中六价铬的应用综述

A critical review of MXene-based composites in the adsorptive and photocatalysis of hexavalent chromium removal from industrial wastewater.

机构信息

Centre of Hydrogen Energy, Institute of Future Energy, 81310, UTM Johor Bahru, Johor, Malaysia; Universiti Teknologi Malaysia, 81310, UTM Johor Bahru, Johor, Malaysia.

Centre of Hydrogen Energy, Institute of Future Energy, 81310, UTM Johor Bahru, Johor, Malaysia; Universiti Teknologi Malaysia, 81310, UTM Johor Bahru, Johor, Malaysia; Saveetha School of Engineering, Saveetha Institute of Medical and Technical Science, Chennai, 60210, India.

出版信息

Environ Res. 2024 Oct 15;259:119584. doi: 10.1016/j.envres.2024.119584. Epub 2024 Jul 9.

Abstract

The growing concern of water pollution is a critical issue stemming from industrialization and urbanization. One of the specific concerns within this broader problem is the toxicity associated with chromium (Cr), especially in its Cr (VI) form. Transition metal carbides/nitrides (MXenes) are attractive materials for the treatment of water due to their unique properties such as layered structure, high surface area, conductivity, flexibility, scalable manufacture, and surface functions. Adsorption and photocatalysis reactions are the two promising methods for the removal of Cr (VI) by using MXenes. Still, most of the previous reviews were limited to the single application area. Hence, this review covers recent developments in MXene-based composites, highlighting their dual role as both adsorbents and photocatalysts in the removal of Cr (VI). MXene-based composites are found to be effective in both adsorption and photodegradation of Cr (VI). Most MXene-based composites have demonstrated exceptional removal efficiency for Cr (VI), achieving impressive adsorption capacities ranging from 100 to 1500 mg g and degradation percentages between 80% and 100% in a relatively short period. The active functional groups present on the surface of MXene have a viable impact on the adsorption and photodegradation performance. The mechanism of Cr (VI) removal is explained, with MXenes playing a key role in electrostatic attraction for adsorption and as co-catalysts in photocatalysis. However, MXene-based composites have limitations such as instability, competition with co-existing ions, and regeneration challenges. Further research is needed to address these limitations. Additionally, MXene-based composites hold promise for addressing water contamination, heavy metal removal, hydrogen production, energy storage, gas sensing, and biomedical applications.

摘要

水污染问题日益严重,这是工业化和城市化带来的一个关键问题。在这个更广泛的问题中,人们特别关注与铬(Cr)相关的毒性,尤其是六价铬(Cr(VI))。过渡金属碳化物/氮化物(MXenes)因其独特的性质,如层状结构、高比表面积、导电性、柔韧性、可扩展性制造和表面功能,成为水处理领域极具吸引力的材料。吸附和光催化反应是利用 MXenes 去除 Cr(VI) 的两种有前途的方法。然而,之前的大多数综述仅限于单一的应用领域。因此,本综述涵盖了基于 MXenes 的复合材料的最新发展,突出了它们在去除 Cr(VI) 方面作为吸附剂和光催化剂的双重作用。研究发现,基于 MXenes 的复合材料在 Cr(VI) 的吸附和光降解方面都非常有效。大多数基于 MXenes 的复合材料在去除 Cr(VI) 方面表现出了优异的去除效率,在相对较短的时间内实现了 100 至 1500 mg g 的吸附容量和 80%至 100%的降解百分比。MXenes 表面存在的活性官能团对吸附和光降解性能有重要影响。解释了 Cr(VI) 去除的机制,其中 MXenes 在吸附过程中通过静电吸引发挥关键作用,在光催化过程中作为共催化剂发挥作用。然而,基于 MXenes 的复合材料存在不稳定性、与共存离子的竞争以及再生挑战等局限性。需要进一步的研究来解决这些问题。此外,基于 MXenes 的复合材料在解决水污染、重金属去除、制氢、储能、气体传感和生物医学应用等方面具有广阔的前景。

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