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首页> 外文期刊>RSC Advances >Polyelectrolyte-grafted Ti3C2-MXenes stable in extreme salinity aquatic conditions for remediation of contaminated subsurface environments
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Polyelectrolyte-grafted Ti3C2-MXenes stable in extreme salinity aquatic conditions for remediation of contaminated subsurface environments

机译:聚电解质接枝Ti3C2-MxENs在极端盐度水生条件下稳定,用于修复受污染的地下环境

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摘要

MXenes, an emerging class of two-dimensional materials, are recently gaining significant attention for numerous environmental applications owing to their superior hydrophilicity and unique surface functionalities, which are suitable for adsorptive removal of various aqueous contaminants. However, it has recently been shown that MXenes have poor colloidal stability in both synthetic or natural waters containing small amounts of salt ions, which will limit the potential uses of MXenes in remediation of subsurface environments that might sometimes contain considerable amounts of salt ions, and other relevant environmental applications. Herein, we develop Ti3C2-MXenes grafted with highly salt-resistant polyelectrolytes (PEs), MXene-g-PEs, which are colloidally stable in extreme salinity aquatic environments and have low adsorption to soil mineral substrates. The MXenes grafted with zwitterionic PEs are found to have superior mobility properties to those with anionic PEs, which are attributed to the anti-PE behavior of the grafted polymer brushes. The MXene-g-(zwitterionic) PEs show long-term colloidal stability over 6 months in American Petroleum Institute (API) brine with extreme salinity (ionic strength of 2 M with 182.2 mM Ca2+), and little adsorption (0.5 mg m(-2)) against alpha-alumina surfaces (2.3 m(2)g(-1)). Furthermore, the MXene-g-PEs retained the excellent adsorption capacity for methylene blue as a model aqueous organic pollutant. The results suggest the great potential of the MXene-g-PEs as an aqueous pollutant scavenger for various environmental applications including the combinedex situ/in situremediation, and other relevant subsurface applications.
机译:MXENES是一种新兴的二维材料,最近在众多的亲水性和独特的表面官能团上获得许多环境应用的重要关注,这适用于可吸附的各种含水污染物。然而,最近已经表明,MXENES在含有少量盐离子的合成或天然水中具有差的胶体稳定性,这将限制MxENES在对地下环境中的修复中的潜在用途,有时含有相当多的盐离子,以及其他相关的环境应用。在此,我们开发用高耐盐的聚电解质(PES),MXENE-G-PE接枝的TI3C2-MXEN,其在极端盐度水生环境中胶体稳定,并且对土壤矿物质基材的吸附很低。发现用两性离子PE接枝的MxENs对具有阴离子PE的那些具有优异的迁移性,归因于接枝聚合物刷的抗PE行为。 MXENE-G-(两性离子)PES在美国石油研究所(API)盐水6个月内显示出长期胶体稳定性,其具有极端盐度(离子强度为2米,182.2mM CA2 +),吸附少(0.5mg m( - 2))对α-氧化铝表面(2.3M(2)G(-1))。此外,MxENE-G-PE作为亚甲基蓝色作为模型水性有机污染物保留了优异的吸附能力。结果表明MXENE-G-PE的巨大潜力作为各种环境应用的含水污染物清除剂,包括包括组合式原位/在尿血症中的其他相关地下应用。

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  • 来源
    《RSC Advances》 |2020年第43期|共13页
  • 作者单位

    Myongji Univ Dept Chem Engn 116 Myongji Ro Yongin 17058 Gyeonggi Do South Korea;

    Myongji Univ Dept Chem Engn 116 Myongji Ro Yongin 17058 Gyeonggi Do South Korea;

    Myongji Univ Dept Chem Engn 116 Myongji Ro Yongin 17058 Gyeonggi Do South Korea;

    Myongji Univ Dept Chem Engn 116 Myongji Ro Yongin 17058 Gyeonggi Do South Korea;

    Myongji Univ Dept Chem Engn 116 Myongji Ro Yongin 17058 Gyeonggi Do South Korea;

    Myongji Univ Dept Chem Engn 116 Myongji Ro Yongin 17058 Gyeonggi Do South Korea;

    Myongji Univ Dept Chem Engn 116 Myongji Ro Yongin 17058 Gyeonggi Do South Korea;

    Myongji Univ Dept Chem Engn 116 Myongji Ro Yongin 17058 Gyeonggi Do South Korea;

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  • 正文语种 eng
  • 中图分类 化学;
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