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Highly efficient removal of Cr(VI) from water with nanoparticulated zerovalent iron: Understanding the Fe(III)-Cr(III) passive outer layer structure

机译:纳米微粒零价铁高效去除水中的Cr(VI):了解Fe(III)-Cr(III)被动外层结构

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Nanoscale zerovalent iron (nZVI) particles were successfully employed for Cr(Vl) removal from aqueous solutions at pH 3. It was found that the capacity of the system increases with increasing nZVI dosage. Starting at 300 μM, a complete Cr(Vl) conversion was achieved in 30 min with a Fe:Cr(VI) molar ratio (MR) of 3, and 45% conversion with MR = 1 over the same period of time. The material exhibited an enhanced reactivity in comparison with other previously tested similar materials. The proposed mechanism involves an initial reduction of Cr(VI) to Cr(III) by reaction with Fe° or Fe(II) on the particle surface or in solution (secondary pathway), followed by an arrest on Cr(VI) removal attributed to the passivation of the surface of the nanoparticles. Passivation was confirmed by Raman and X-ray photoelectron spectroscopies (XPS). Furthermore, XPS analysis demonstrated that Cr(III) is the only Cr species present in the external layer of the nanoparticles after the reaction. Raman analysis and XPS measurements performed after mild sputtering showed that nZVI exposed to Cr(VI) presented a structure, from outside to inside, of hydroxychromites -> magnetite -> Fe~0.
机译:纳米级零价铁(nZVI)颗粒已成功用于在pH 3下从水溶液中去除Cr(Vl)。发现系统容量随着nZVI剂量的增加而增加。从300μM开始,在30分钟内,Fe:Cr(VI)摩尔比(MR)为3,并在相同的时间内MR = 1,实现了45%的Cr(VI)完全转化。与其他先前测试的相似材料相比,该材料表现出增强的反应性。拟议中的机制包括通过与颗粒表面或溶液中的Fe°或Fe(II)反应将Cr(VI)初始还原为Cr(III)(次级途径),然后阻止归因于Cr(VI)的去除钝化纳米颗粒的表面。钝化由拉曼和X射线光电子能谱(XPS)确认。此外,XPS分析表明,反应后,Cr(III)是纳米颗粒外层中唯一的Cr物种。温和溅射后进行的拉曼分析和XPS测量表明,暴露于Cr(VI)的nZVI从外到内呈现羟基铬铁矿->磁铁矿-> Fe〜0的结构。

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