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揭示基于MXene的纳米结构在去除废水中有毒金属方面的制备及其环境修复:策略与机制

Unveiling Fabrication and Environmental Remediation of MXene-Based Nanoarchitectures in Toxic Metals Removal from Wastewater: Strategy and Mechanism.

作者信息

Ibrahim Yassmin, Kassab Amal, Eid Kamel, M Abdullah Aboubakr, Ozoemena Kenneth I, Elzatahry Ahmed

机构信息

Center for Advanced Materials, Qatar University, Doha 2713, Qatar.

Biomedical and Biological Engineering Department, McGill University, Montreal, QC H3A 0G4, Canada.

出版信息

Nanomaterials (Basel). 2020 May 4;10(5):885. doi: 10.3390/nano10050885.

Abstract

Efficient approaches for toxic metal removal from wastewater have had transformative impacts to mitigating freshwater scarcity. Adsorption is among the most promising purification techniques due to its simplicity, low cost, and high removal efficiency at ambient conditions. MXene-based nanoarchitectures emerged as promising adsorbents in a plethora of toxic metal removal applications. This was due to the unique hydrophilicity, high surface area, activated metallic hydroxide sites, electron-richness, and massive adsorption capacity of MXene. Given the continual progress in the rational design of MXene nanostructures for water treatment, timely updates on this field are required that deeply emphasize toxic metal removal, including fabrication routes and characterization strategies of the merits, advantages, and limitations of MXenes for the adsorption of toxic metals (i.e., Pb, Cu, Zn, and Cr). This is in addition to the fundamentals and the adsorption mechanism tailored by the shape and composition of MXene based on some representative paradigms. Finally, the limitations of MXenes and their potential future research perspectives for wastewater treatment are also discussed. This review may trigger scientists to develop novel MXene-based nanoarchitectures with well-defined shapes, compositions, and physiochemical merits for efficient, practical removal of toxic metals from wastewater.

摘要

从废水中去除有毒金属的有效方法对缓解淡水短缺产生了变革性影响。吸附法因其操作简单、成本低以及在环境条件下具有较高的去除效率,成为最具前景的净化技术之一。基于MXene的纳米结构在众多有毒金属去除应用中成为有前景的吸附剂。这是由于MXene具有独特的亲水性、高比表面积、活性金属氢氧化物位点、富电子性以及巨大的吸附容量。鉴于在用于水处理的MXene纳米结构的合理设计方面不断取得进展,需要对该领域进行及时更新,深入强调有毒金属的去除,包括MXene用于吸附有毒金属(即铅、铜、锌和铬)的制备路线、表征策略、优点、优势和局限性。此外,还基于一些代表性范例阐述了由MXene的形状和组成所决定的基本原理及吸附机制。最后,还讨论了MXene的局限性及其在废水处理方面潜在的未来研究前景。这篇综述可能会促使科学家开发具有明确形状、组成和物理化学特性的新型MXene基纳米结构,以高效、实际地从废水中去除有毒金属。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd25/7279406/21de08963e25/nanomaterials-10-00885-g001.jpg

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