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首页> 外文期刊>Environmental Science and Pollution Research >Synthesis of nano-scale zero-valent iron-reduced graphene oxide-silica nano-composites for the efficient removal of arsenic from aqueous solutions
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Synthesis of nano-scale zero-valent iron-reduced graphene oxide-silica nano-composites for the efficient removal of arsenic from aqueous solutions

机译:纳米级零型氧化铁氧化铁 - 二氧化硅纳米复合材料的合成,用于从水溶液中有效去除砷

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Design and synthesis of arsenic adsorbents with high performance and excellent stability has been still a significant challenge. In this study, we anchored nano-zero-valent iron (NZVI) on the surface of graphene-silica composites (GS) with high specific surface area, forming the NZVI/GS nano-composite. The prepared nano-materials were used to remove As(III) and As(V) through adsorption from aqueous solutions. The results indicated that NZVI particles were dispersed well on the surface of GS, and the NZVI/GS showed great potential to remove As(III) and As(V). Adsorption performance of NZVI/GS for As(III) and As(V) highly depended on the pH of solutions. The experimental data fitted well with the pseudo-second-order kinetic model and the Langmuir isotherm model. The calculated maximum adsorption capacities of NZVI/GS for As(III) and As(V) were up to 45.57 mg/g and 45.12 mg/g at 298 K, respectively, and the adsorption equilibrium could be reached within 60 min. The residual concentrations of As(III) and As(V) after treatment with 0.4 g/L NZVI/GS can meet with the drinking water standard of WHO when the initial concentrations were below 4 mg/L and 3 mg/L, respectively. Moreover, the as-prepared NZVI/GS had excellent anti-interference ability during the process of As removal in the presence of foreign ions. During the As removal process, As(III) was oxidized to As(V), which could be removed through adsorption by electrostatic attraction and complexation. These results indicated that the as-synthesized NZVI/GS composite is a promising adsorbent for the removal of arsenic from aqueous solutions.
机译:具有高性能和优异稳定性的砷吸附剂的设计和合成仍然是一项重大挑战。在这项研究中,我们将纳米零型铁(NZVI)固定在具有高比表面积的石墨烯 - 二氧化硅复合材料(GS)表面上,形成NZVI / GS纳米复合材料。制备的纳米材料通过从水溶液吸附的吸附中除去(III)和As(v)。结果表明,NZVI颗粒在GS的表面上分散,NZVI / GS显示出较大的潜力以除去(III)和(v)。 NZVI / GS的吸附性能为(III)和(v)高度依赖于溶液的pH值。实验数据与伪二阶动力学模型和Langmuir等温模型很好。作为(III)的NZVI / GS的计算的最大吸附容量分别在298k的298k中高达45.57mg / g和45.12mg / g,并且可以在60分钟内达到吸附平衡。用0.4g / L nzvi / gs处理后的As(iii)和As(v)的残余浓度可以与初始浓度低于4mg / L和3mg / L的饮用水标准。此外,在外离子存在下的过程中,制备的NZVI / GS具有优异的抗干扰能力。在作为去除过程中,如(III)被氧化成(V),通过静电吸引和络合吸附,可以通过吸附除去。这些结果表明,AS合成的NZVI / GS复合材料是一种有望的吸附剂,用于从水溶液中除去砷。

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