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Synthesis and characterization of kaolinite-supported zero-valent iron nanoparticles and their application for the removal of aqueous Cu2+ and Co2+ ions

机译:高岭石负载的零价铁纳米粒子的合成,表征及其在去除水中Cu2 +和Co2 +离子中的应用

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摘要

This study reports the synthesis and characterization of nano-scale zero-valent iron in the presence of kaolinite clay (nZVI-kaol). The adsorbent, nZVI-kaol, was produced at initial Fe:kaolinite mass ratios of 1:1, 0.5:1, and 0.2:1. The presence of kaolinite resulted in decreased aggregation of iron nanoparticles, yielding composites with iso-electric points (IEPs) around 6.7–7.0. The reduction in Fe2+ precursor concentration appeared to decrease further the extent of aggregation and the size of individual nZVI particles. The synthesized nZVI-kaol materials were then tested for the removal of aqueous Cu2+ and Co2+ ions. The investigated parameters in the uptake experiments included volume/mass (V/M) ratio, initial concentrations of Cu2+ and Co2+ ions, contact time, pH, and repetitive application of the adsorbent. The adsorbents demonstrated high removal abilities towards both cations under the investigated conditions. Repetitive loading tests showed that significant removal could still be achieved at small concentrations by samples reused several times. X-ray photoelectron spectroscopy (XPS) analysis showed that while Co2+ was mainly fixed by the oxyhydroxyl groups of iron nanoparticles, Cu2+ ions were fixed by a redox mechanism, leading to the formation of Cu2O and Cu0.
机译:这项研究报告了在高岭石粘土(nZVI-kaol)存在下纳米级零价铁的合成和表征。吸附剂nZVI-kaol的初始Fe:高岭石质量比为1:1、0.5:1和0.2:1。高岭石的存在导致铁纳米颗粒的聚集减少,产生的复合材料的等电点(IEP)约为6.7-7.0。 Fe 2+前体浓度的降低似乎进一步降低了聚集程度和单个nZVI颗粒的大小。然后测试合成的nZVI-kaol材料的水溶液中Cu2 +和Co2 +离子的去除。吸收实验中研究的参数包括体积/质量(V / M)比,Cu2 +和Co2 +离子的初始浓度,接触时间,pH值以及吸附剂的重复使用。在研究的条件下,吸附剂对两种阳离子均显示出高去除能力。重复的加载测试表明,通过多次重复使用样品,仍可以在低浓度下实现显着去除。 X射线光电子能谱(XPS)分析表明,Co2 +主要被铁纳米粒子的羟基所固定,而Cu2 +离子则被氧化还原机制所固定,从而导致了Cu2O和Cu0的形成。

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