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Adsorptive removal of lead (Ⅱ) ion from water and wastewater media using carbon-based nanomaterials as unique sorbents: A review

机译:碳基纳米材料作为独特吸附剂从水和废水介质中吸附去除铅(Ⅱ)的研究进展

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Carbon-based nanomaterials and its derivatives such as carbon nanotubes, graphene, reduced graphene oxide, and graphene oxide have been widely used as unique sorbents for removal of both organic and inorganic contaminants due to unique physical and chemical properties. In the review, application of the carbon-based nanomaterials or nanocomposites is considered with particular focus on the lead(II) removal from water and wastewater samples. Moreover, various procedures of synthesis and functionalization of each class of carbon-based nanomaterials were reviewed. A critical review has been given to the adsorption behavior of these nanomaterials and interaction type between the sorbent and lead(II) ion s due to changes in their surface structure and functional group modification for the removal of lead(II)ions. The adsorption capacity, the sorbent selectivity and structure, and the adsorption mechanism for lead(II) ion adsorption with these sorbents were studied and compared. Specific consideration is devoted to effecting of pH of samples as a critical factor in the adsorption of lead(II)ions on each class of carbon-based nanomaterials. Also, the advantages and disadvantages of the nanomaterials or nanocomposites for the adsorption of lead(II) ion were evaluated in detail. In this way, the paper will contribute to presenting suggestions for the preparation of new sorbents to researchers for future study, as well as the remaining research challenges in this field.
机译:碳基纳米材料及其衍生物,例如碳纳米管,石墨烯,还原型氧化石墨烯和氧化石墨烯,由于其独特的物理和化学特性,已被广泛用作去除有机和无机污染物的独特吸附剂。在审查中,考虑了碳基纳米材料或纳米复合材料的应用,特别着重于从水和废水样品中去除铅(II)。此外,审查了每一类碳基纳米材料的合成和功能化的各种程序。由于这些纳米材料的表面结构变化和用于去除铅(II)离子的官能团修饰,已对这些纳米材料的吸附行为以及吸附剂和铅(II)离子之间的相互作用类型进行了严格的审查。研究并比较了这些吸附剂对铅(II)离子的吸附能力,吸附剂的选择性和结构以及吸附机理。专门考虑将样品的pH值作为影响铅(II)离子在每类碳基纳米材料上吸附的关键因素。另外,详细评估了纳米材料或纳米复合材料吸附铅(II)离子的优缺点。这样,本文将有助于向研究人员提出用于制备新吸附剂的建议,以供将来研究,以及该领域中剩余的研究挑战。

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