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Adsorptive remediation of environmental pollutants using novel graphene-based nanomaterials

机译:使用新型石墨烯基纳米材料吸附修复环境污染物

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摘要

Pollution of air, water and soil is a worldwide issue for the eco-environment and human society. Removal of various pollutants including inorganic and organic compounds from the environment is a big challenge. Adsorption techniques are usually simple and work effectively. However, the adsorption capacities of materials depend on their porous structure and surface properties. Graphene oxide and graphene are new carbonaceous nanomaterials. Graphene has a large theoretical specific surface area and graphene oxide has functional groups, indicating their potential for the adsorption processes. In the past few years, many investigations have been focused on the applications of graphene or composites in removal of pollutants from air and water. In this paper, we will review recent advances in graphene-related nanomaterials for adsorptive treatment of environmental pollution. Graphene oxide possesses several functional groups and strong acidity, exhibiting high adsorption for basic compounds and cations while graphene shows hydrophobic surface and presents high adsorption to chemicals due to strong π-π interaction. Modification of graphene oxide or graphene with metal oxides or organics can produce various nanocom-posites, enhancing adsorption capacity and separation efficiency. Activation of graphene into porous carbonaceous material will be a promising way to further enhance adsorption capacity.
机译:空气,水和土壤的污染是生态环境和人类社会的世界性问题。从环境中去除各种污染物,包括无机和有机化合物是一个巨大的挑战。吸附技术通常很简单且有效。但是,材料的吸附能力取决于其多孔结构和表面性质。氧化石墨烯和石墨烯是新的碳纳米材料。石墨烯具有较大的理论比表面积,而氧化石墨烯具有官能团,表明其在吸附过程中的潜力。在过去的几年中,许多研究集中在石墨烯或复合材料在去除空气和水中污染物方面的应用。在本文中,我们将回顾石墨烯相关纳米材料在吸附处理环境污染方面的最新进展。氧化石墨烯具有多个官能团和强酸性,对碱性化合物和阳离子表现出高吸附性,而石墨烯则表现出疏水性表面,并且由于强烈的π-π相互作用而对化学物质表现出高吸附性。用金属氧化物或有机物对氧化石墨烯或石墨烯进行改性可以产生各种纳米复合材料,从而提高吸附能力和分离效率。将石墨烯活化成多孔碳质材料将是进一步提高吸附能力的有前途的方法。

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