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Highly Reactive Subnano-Sized Zero-Valent Iron Synthesized on Smectite Clay Templates

机译:在蒙脱石粘土模板上合成的高反应性亚纳米零价铁

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A novel method was developed for synthesizing subnano-sized zero-valent iron (ZVI) using smectite clay layers as templates.Exchangeable Fe(Ⅲ) cations compensating the structural negative charges of smectites were reduced with NaBH4,resulting in the formation of ZVI.The unique structure of smectite clay,in which isolated exchangeable Fe(Ⅲ) cations reside at the sites of structural negative charges,inhibited the agglomeration of ZVI resulting in the formation of discrete regions of subnanoscale ZVI particles in the smectite interlayer regions.X-ray diffraction revealed an interlayer spacing of-5 (A).The clay-templated ZVI showed superior reactivity and efficiency compared to other previously reported forms of ZVI as indicated by the reduction of nitrobenzene.These results confirm that non-structural Fe from Fe(Ⅲ)-smectites was reduced predominantly to ZVI which was responsible for the reduction ofnitrobenzene to aniline.This new form of subnano-scale ZVI may find its utility in the development of remediation technologies for persistent environmental contaminants.
机译:提出了一种以蒙脱土层为模板合成亚纳米级零价铁的新方法,用NaBH4还原了补偿蒙脱土结构负电荷的可交换Fe(Ⅲ)阳离子,形成了ZVI。蒙脱石粘土的独特结构,其中孤立的可交换的Fe(Ⅲ)阳离子位于结构负电荷的位点,抑制了ZVI的团聚,导致在蒙脱石夹层区域形成亚纳米级ZVI颗粒的离散区域。X射线衍射结果表明层间间距为-5(A)。以硝基苯的还原表明,粘土模板ZVI与先前报道的其他ZVI相比,具有更高的反应性和效率。这些结果证实了Fe(Ⅲ)的非结构化Fe蒙脱石主要还原为ZVI,这导致硝基苯还原为苯胺。亚纳米级ZVI的这种新形式可能会在开发中找到其用途。选择持久性环境污染物的修复技术。

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