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Designing Dual-Effect Nanohybrids for Removing Heavy Metals and Different Kinds of Anions from the Natural Water

机译:用于从天然水中去除重金属和不同种类的阴离子的双效纳米冬嗜

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摘要

In the present study, well-designed nanohybrids are used to act as effective dual-function adsorbents for removing both anions and heavy metals from natural water, at the same time. In this trend, Zn-Al LDHs and graphene oxide are applied to build up building blocks to produce a series of nanohybrids. These nanohybrids were characterized by X–ray diffraction, thermal analyses, Fourier transform infrared spectroscopy, Raman spectroscopy, and scanning and transmission electron microscopy. These techniques confirmed that the prepared nanohybrids contained nanolayered structures with three−dimensional porous systems. These porous systems were identified by the nitrogen adsorption-desorption isotherms and water purification experiments. The obtained results indicated that these nanohybrids included suitable structures to act as dual function materials. The first function was achieved by removing more than 80% of both cadmium and lead from the natural water. The second function was accomplished by eliminating of 100% of hydrogen phosphate and bromide anions alongside with 80%–91% of sulfate, chloride, and fluoride anions. To conclude, these well-designed nanohybrids convert two-dimensional nanolayered structures to three-dimensional porous networks to work as dual-function materials for removing of heavy metals and different kinds of anions naturally found in the fresh tap water sample with no parameters optimization.
机译:在本研究中,良好设计的纳米嗜含量用于充当有效的双功能吸附剂,用于同时从天然水中除去两个阴离子和重金属。在这种趋势中,施加Zn-Al LDH和氧化铟烯和石墨烯氧化物以构建构建块以产生一系列纳米胺。这些纳米组织的特征在于X射线衍射,热分析,傅里叶变换红外光谱,拉曼光谱和扫描和透射电子显微镜。这些技术证实,制备的纳米组织含有三维多孔系统的纳米结构。通过氮吸附 - 解吸等温线和水净化实验鉴定了这些多孔系统。所得结果表明,这些纳米胺包括充当双函数材料的合适结构。通过从天然水中除去超过80%的镉并引导来实现第一功能。通过在80%-91%的硫酸盐,氯化物和氟化物阴离中消除100%的磷酸氢和溴化物和溴化物阴离子来实现第二功能。为了得出结论,这些良好设计的纳米冬小化物将二维纳米制剂结构转换为三维多孔网络,以用作双函数材料,用于去除在新鲜自来水样品中自然发现的重金属和不同种类的阴离子,没有参数优化。

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