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Synthesis of reactive nanoscale zero valent iron using rectorite supports and its application for Orange II removal

机译:累托石载体合成活性纳米级零价铁及其在去除橙Ⅱ中的应用

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The nanoscale zero valent iron-rectorite (nZVI-R) composite was successfully synthesized through incorporation of nano-zero valent iron (nZVl) into the natural rectorite as supports. Iron ions were imbedded in the interlayer of rectorite clay via an ion-exchange reaction, and then the exchangeable Fe(III) cations were reduced to nZVI by NaBH4 in solution. The confinement of Fe crystal growth in the interlayer regions of rectorite resulted in the formation of nZVI particles at ca. 10.3 nm. The structure, morphology, Fe species, crystal phase, and elemental composition of the prepared nZVI-R composite materials were characterized using X-ray diffraction (XRD), high-resolution transmission electron microscopy (HR-TEM), X-ray photoelectron spectroscopy (XPS) and X-ray fluorescence (XRF). Comparing with the commercially available nZVl-Junye, nZVI prepared in laboratory (nZVI-Lab) and Na-rectorite, the synthesized nZVI-R composite in this study showed superior decolonization efficiency for Orange II with 0.2 g of nZVI-R and a complete removal of Orange II achieved in less than 10 min. On the basis of FT-IR spectra, the mechanism for nZVI-R in the discoloration of Orange II was also postulated. This nZVI-R composite has potential applications in cleaning up environmental contaminants such as organic dyes or halogen compounds.
机译:纳米零价铁-锂蒙脱石(nZVI-R)复合材料是通过将纳米零价铁(nZV1)掺入天然累托石中作为载体成功合成的。通过离子交换反应将铁离子嵌入累托石粘土的中间层中,然后通过溶液中的NaBH4将可交换的Fe(III)阳离子还原为nZVI。累累石夹层区域内的Fe晶体生长的限制导致在n处形成nZVI粒子。 10.3海里用X射线衍射(XRD),高分辨率透射电子显微镜(HR-TEM),X射线光电子能谱对制备的nZVI-R复合材料的结构,形貌,Fe种类,晶相和元素组成进行了表征。 (XPS)和X射线荧光(XRF)。与市售的nZVl-Junye,实验室制备的nZVI(nZVI-Lab)和钠锂蒙脱石相比,本研究中合成的nZVI-R复合材料显示了0.2 g nZVI-R对Orange II的优异的非殖民化效率,并且可以完全去除在不到10分钟的时间内完成了Orange II的测试。根据FT-IR光谱,还推测了nZVI-R使橙II脱色的机理。这种nZVI-R复合材料在清洁环境污染物(例如有机染料或卤素化合物)方面具有潜在的应用。

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