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首页> 外文期刊>Scientific reports. >Removal of hexavalent chromium from aqueous solution by fabricating novel heteroaggregates of montmorillonite microparticles with nanoscale zero-valent iron
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Removal of hexavalent chromium from aqueous solution by fabricating novel heteroaggregates of montmorillonite microparticles with nanoscale zero-valent iron

机译:通过用纳米级零价熨斗制造蒙脱土微粒的新型杂碳法除去水溶液中的六价铬

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摘要

This study fabricated novel heteroaggregates of montmorillonite (Mt) microparticles with nanoscale zero-valent iron (nZVI) (Mt-nZVI) and examined the removal of Cr(VI) by the Mt-nZVI through batch experiments. Spherical nZVI particles were synthesized by the liquid phase reduction method, which were then attached on the flat Mt surfaces in monolayer. The fabricated Mt-nZVI had similar removal efficiency for Cr(VI) compared to the monodispersed nZVI particles, but was much greater than that of nZVI aggregates. The removal efficiency of Mt-nZVI increased with decreasing its dosage and increasing initial Cr(VI) concentration, whereas had insignificant change with solution pH. The removal of Cr(VI) by Mt-nZVI was well described by the pseudo second-order kinetics and the Langmuir equilibrium model. The removal was spontaneous and exothermic, which was mainly due to chemsorption rather than intra-particle diffusion according to calculation of change in free energy and enthalpy and Weber–Morris model simulations. X-ray diffraction and X-ray photoelectron spectroscopy analysis revealed that the adsorption was likely due to reduction of Cr(VI) to Cr(III) by Fe(0) and co-precipitation in the form of oxide-hydroxide of Fe(III) and Cr(III). The fabricated Mt-nZVI showed the promise for in-situ soil remediation due to both high removal efficiency and great mobility in porous media.
机译:该研究用纳米级零价铁(NZVI)(MT-NZVI)制成了新型杂种芳樟块的蒙脱石(MT)微粒,并通过分批实验检查了MT-NZVI的CR(VI)的去除。通过液相还原方法合成球形NZVI颗粒,然后将其连接在单层的平坦MT表面上。与单分散的NZVI颗粒相比,制造的MT-NZVI对Cr(VI)具有类似的去除效率,但是远大于NZVI聚集体的含量。 MT-NZVI的去除效率随着其剂量和增加初始Cr(VI)浓度而增加,而溶液pH具有微不足道的变化。通过伪二阶动力学和Langmuir均衡模型对MT-NZVI进行很好地描述了MT-NZVI的Cr(VI)。去除是自发性和放热的,这主要是由于化学吸制而不是根据自由能和焓和韦伯 - 莫尔斯模型模拟的变化的计算而导致的粒子扩散。 X射线衍射和X射线光电子能谱分析显示,通过Fe(0)和Fe(III)的氧化物 - 氢氧化物形式的共沉淀,吸附可能是由于Cr(VI)至Cr(III)的降低(III)(III )和Cr(iii)。由于高透明效率和多孔介质中的较大流动性,所制造的MT-NZVI显示出原位土壤修复的承诺。

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