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Smart 2D-2D Nano-Composite Adsorbents of LDH-Carbonaceous Materials for the Removal of Aqueous Toxic Heavy Metal Ions: A Review

机译:LDH-碳质材料的智能2D-2D纳米复合吸附剂,用于去除含水毒性重金属离子:综述

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Objective: We develop a very efficient method for removal of aqueous heavy metal toxic ions by smart nanocomposite materials by adsorption.Background: Various methods such as ion exchange, nano-filtration, reverse osmosis, and co-precipitation that are used for the removal of aqueous toxic metal ions proved to be expensive, cumbersome and convoluted the condition. Both Graphene Family Materials (GFM) and Layered Double Hydroxides (LDH) have been extensively studied for environment protection for increased user acceptance, and improved overall performance.Methods: We review problems with noxious and recalcitrant heavy metals present in surface water. We contrast the approach of expensive and cumbersome methods to simple, low cost and eco-friendly ones. We put forward the various 2D-2D nano-composites recently used for effective removal of toxic metal ions substantiated due to anthropogenic activities.Results: On the basis of these analyses, we propose methods for supporting 2D-2D composites fabricated by surface altercation, crystal lattice defect substitution and intercalation modification by LDH with nanocarbons, carbon nanotubes, grapheme materials, polydopamine and polyaniline are frontrurmers in well-organized, proficient and resourceful adsorbents. Finally, we describe the reasons, preparations and work done by LDH carbonaceous materials as fore-front adsorbents for removal of aqueous toxic metal ions from water.Conclusion: The chemical reactivity and positively charge of LDH and the electrical activity and negatively charge of carbonaceous materials synergistically contributed with large surface area, abundant active sites and compatibility made the sorbent a champion in water remediation.Application: The present scenario is urgently in need of innovative sorbents with 100% efficiency with fast removal of toxins from water to meet the scarcity of safe water in the coming decade.
机译:目的:我们开发用于通过智能纳米复合物材料由adsorption.Background除去含水重金属毒性离子的非常有效的方法,包括:各种方法,例如离子交换,纳滤,反渗透,以及共沉淀的是用于去除水性有毒的金属离子被证明是昂贵的,麻烦的和卷积的条件。这两种石墨烯族材料(GFM)和滑石(LDH)已被广泛研究对于提高用户的接受环境的保护,并提高了整体performance.Methods:我们回顾与有毒的和顽抗的重金属问题存在于地表水。我们对比的昂贵和繁琐的方法简单,成本低,环保型的人的做法。我们提出了各种2D-2D纳米复合最近用于有效地除去由于人为activities.Results证实有毒金属离子的:在这些分析的基础上,提出用于支持2D-2D的方法复合材料由表面口角制成,晶体晶格缺陷替换和修改嵌入通过与纳米碳,碳纳米管,石墨烯材料,聚多巴胺和聚苯胺是良好组织,精通和机智吸附剂frontrurmers LDH。最后,我们描述的原因,制剂和通过LDH碳质材料进行作为用于除去从含水water.Conclusion有毒金属离子的前 - 前吸附剂工作:该化学反应性和带正电LDH和电活动的和带负电的碳质材料的具有比表面积大协同贡献,丰富的活性位点和兼容性做出的吸附剂在水中remediation.Application冠军:本方案是急需用100%的效率快速去除水中的毒素吸附剂的创新,以满足安全的稀缺性水在未来的十年。

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