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A comprehensive review of applications of magnetic graphene oxide based nanocomposites for sustainable water purification

机译:磁性氧化石墨烯基纳米复合材料在可持续水净化中的应用综述

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摘要

With the rapid growth of industrialization, water bodies are polluted with heavy metals and toxic pollutants. In pursuit of removal of toxic pollutants from the aqueous environment, researchers have been developed many techniques. Among these techniques, magnetic separation has caught research attention, as this approach has shown excellent performance in the removal of toxic pollutants from aqueous solutions. However, magnetic graphene oxide based nanocomposites (MGO) possess unique physicochemical properties including excellent magnetic characteristics, high specific surface area, surface active sites, high chemical stability, tunable shape and size, and the ease with which they can be modified or functionalized. As results of their multi-functional properties, affordability, and magnetic separation capability, MGO's have been widely used in the removal of heavy metals, radionuclides and organic dyes from the aqueous environment, and are currently attracting much attention. This paper provides insights into preparation strategies and approaches of MGO's utilization for the removal of pollutants for sustainable water purification. It also reviews the preparation of magnetic graphene oxide nanocomposites and primary characterization instruments required for the evaluation of structural, chemical and physical functionalities of synthesized magnetic graphene oxide nanocomposites. Finally, we summarized some research challenges to accelerate the synthesized MGO's as adsorbents for the treatment of water pollutants such as toxic and radioactive metal ions and organic and agricultural pollutants.
机译:随着工业化的快速发展,水体被重金属和有毒污染物污染。为了从水环境中去除有毒污染物,研究人员开发了许多技术。在这些技术中,磁分离引起了研究关注,因为这种方法在从水溶液中去除有毒污染物方面显示出了出色的性能。然而,基于氧化石墨烯的纳米复合材料(MGO)具有独特的物理化学性质,包括出色的磁性,高比表面积,表面活性位点,高化学稳定性,可调的形状和尺寸,以及易于修饰或功能化的特性。由于其多功能性,可负担性和磁选能力,MGO已广泛用于从水性环境中去除重金属,放射性核素和有机染料,目前引起了广泛关注。本文提供了有关MGO利用其去除污染物以实现可持续水净化的准备策略和方法的见解。它还审查了磁性氧化石墨烯纳米复合材料的制备和评估合成的磁性氧化石墨烯纳米复合材料的结构,化学和物理功能所需的主要表征仪器。最后,我们总结了加速合成的MGO作为吸附剂处理水污染物(如有毒和放射性金属离子以及有机和农业污染物)的吸附剂的研究挑战。

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