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首页> 外文期刊>Journal of Colloid and Interface Science >Kinetic, isotherm and thermodynamic investigations of phosphate adsorption onto core-shell Fe3O4@LDHs composites with easy magnetic separation assistance
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Kinetic, isotherm and thermodynamic investigations of phosphate adsorption onto core-shell Fe3O4@LDHs composites with easy magnetic separation assistance

机译:动力学吸附,等温线和热力学研究磷酸盐在核-壳型Fe3O4 @ LDHs复合材料上的吸附,并易于磁选

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摘要

In this study, three different magnetic core-shell Fe3O4@LDHs composites, Fe3O4@Zn-Al-, Fe3O4@Mg-Al-, and Fe3O4@Ni-Al-LDH were prepared via a rapid coprecipitation method for phosphate adsorptive removal. The composites were characterized by XRD, FTIR, TEM, VSM and BET analyses. Characterization results proved the successful synthesis of core-shell Fe3O4@LDHs composites with good superparamagnetisms. Batch experiments were conducted to study the adsorption efficiency of phosphate. Optimal conditions for the phosphate adsorption were obtained: 0.05 g of adsorbent, solution pH of 3, and contact time of 60 min. Proposed mechanisms for the removal of phosphate species onto Fe3O4@LDHs composites at different initial solution pH were showed. The kinetic data were described better by the pseudo-second-order kinetic equation and KASRA model. The adsorption isotherm curves showed a three-region behavior in the ARIAN model. It had a good fit with Langmuir model and the maximum adsorption capacity followed the order of Fe3O4@Zn-Al-LDH > Fe3O4@Mg-Al-LDH > Fe3O4@Ni-Al-LDH. Thermodynamic analyses indicated that the phosphate adsorption process was endothermic and spontaneous in nature. The three Fe3O4@LDHs composites could be easily separated from aqueous solution by the external magnetic field in 10 s. These novel magnetic core-shell Fe3O4@LDHs adsorbents may offer a simple single step adsorption treatment option to remove phosphate from water without the requirement of pre-/post-treatment for current industrial practice. (C) 2015 Elsevier Inc. All rights reserved.
机译:在这项研究中,通过快速共沉淀法制备了三种不同的磁性核-壳型Fe3O4 @ LDHs复合材料Fe3O4 @ Zn-Al-,Fe3O4 @ Mg-Al-和Fe3O4 @ Ni-Al-LDH,以去除磷酸盐。通过XRD,FTIR,TEM,VSM和BET分析对复合材料进行表征。表征结果证明了具有良好超顺磁性的核-壳型Fe3O4 @ LDHs复合材料的成功合成。进行分批实验以研究磷酸盐的吸附效率。获得了磷酸盐吸附的最佳条件:0.05 g吸附剂,溶液pH为3,接触时间为60分钟。提出了在不同初始溶液pH下去除Fe3O4 @ LDHs复合材料上磷酸盐种类的建议机制。动力学数据可以通过拟二阶动力学方程和KASRA模型更好地描述。吸附等温线在ARIAN模型中显示出三个区域的行为。它与Langmuir模型具有很好的拟合性,其最大吸附容量依次为Fe3O4 @ Zn-Al-LDH> Fe3O4 @ Mg-Al-LDH> Fe3O4 @ Ni-Al-LDH。热力学分析表明,磷酸盐的吸附过程是吸热的,自然而然的。三种Fe3O4 @ LDHs复合材料可以在10 s内通过外部磁场轻易地从水溶液中分离出来。这些新颖的磁性核-壳型Fe3O4 @ LDHs吸附剂可提供简单的一步吸附处理选项,以从水中去除磷酸盐,而无需进行当前工业实践中的前/后处理。 (C)2015 Elsevier Inc.保留所有权利。

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