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Adsorptive remediation of environmental pollutants using magnetic hybrid materials as platform adsorbents

机译:用磁性杂交材料作为平台吸附剂的吸附治疗环境污染物

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摘要

Effective separation and remediation of environmentally hazardous pollutants are burning areas of research because of a constant increase in environmental pollution problems. An extensive number of emerging contaminants in the environmental matrices result in serious health consequences in animals, humans, and plants, even at trace levels. Therefore, it is of paramount significance to quantify these undesirable pollutants, even at a very low concentration, from the natural environment. Magnetic solid-phase extraction (MSPE) has recently achieved huge attention because of its strong magnetic domain and easy separation through an external magnetic field compared with simple solid-phase extraction. Therefore, MSPE appeared the most promising technique for removing and pre-concentration of emerging pollutants at trace level. Compared to the normal solid-phase extraction, MSPE as magnetic hybrid adsorbents offers the unique advantages of distinct nanomaterials and magnetic hybrid materials. It can exhibit efficient dispersion and rapid recycling when applying to a very complex matrix. This review highlights the possible environmental applications of magnetic hybrid nanoscale materials as effective MSPE sorbents to remediate a diverse range of environmentally toxic pollutants. We believe this study tends to evoke a variety of research thrust that may lead to novel remediation approaches in the forthcoming years.
机译:由于环境污染问题的持续增加,环境危害污染物的有效分离和修复是燃烧的研究领域。环境基质中的广泛污染物的广泛污染物导致动物,人类和植物中的严重后果,即使在痕量水平。因此,甚至以非常低的浓度从自然环境中量化这些不希望的污染物是最重要的。磁共相萃取(MSPE)最近由于其强的磁畴和通过外部磁场而容易分离而易于分离,与简单的固相提取相比。因此,MSPE出现了最有希望的技术,用于在痕量水平下去除和预浓缩新出现的污染物。与正常的固相萃取相比,MSPE作为磁性杂交吸附剂提供了不同的纳米材料和磁性混合材料的独特优点。当施加非常复杂的基质时,它可以表现出高效的分散和快速回收。本综述突出了磁性杂交纳米材料作为有效的MSPE吸附剂的可能环境应用,以修复各种环保污染物。我们相信本研究倾向于唤起各种研究推力,可能导致即将到来的几年内的新修复方法。

著录项

  • 来源
    《Chemosphere》 |2021年第12期|131279.1-131279.17|共17页
  • 作者单位

    Huaiyin Inst Technol Fac Chem Engn Key Lab Reg Resource Exploitat & Med Res Huaian Jiangsu Peoples R China;

    Huaiyin Inst Technol Fac Chem Engn Key Lab Reg Resource Exploitat & Med Res Huaian Jiangsu Peoples R China;

    Huaiyin Inst Technol Sch Life Sci & Food Engn Huaian 223003 Peoples R China;

    Huaiyin Inst Technol Fac Chem Engn Key Lab Reg Resource Exploitat & Med Res Huaian Jiangsu Peoples R China;

    Univ Peshawar Inst Chem Sci Khyber Pakhtunkhwa 25120 Pakistan;

    Hazara Univ Dept Chem Kpk 21300 Mansehra Pakistan;

    Huaiyin Inst Technol Fac Chem Engn Key Lab Reg Resource Exploitat & Med Res Huaian Jiangsu Peoples R China;

    Huaiyin Inst Technol Fac Chem Engn Key Lab Reg Resource Exploitat & Med Res Huaian Jiangsu Peoples R China;

    Huaiyin Inst Technol Fac Chem Engn Key Lab Reg Resource Exploitat & Med Res Huaian Jiangsu Peoples R China;

    Nottingham Trent Univ Sch Sci & Technol Dept Engn Nottingham NG11 8NS England;

    Tecnol Monterrey Sch Sci & Engn Monterrey 64849 Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Environmental pollutants; Magnetic solid-phase extraction; Adsorbents; Carbon nanotubes; Metal-organic frameworks; Magnetic hybrid materials;

    机译:环境污染物;磁性固相提取;吸附剂;碳纳米管;金属有机框架;磁性混合材料;

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