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Temperature Programmed Reduction for Measurement of Oxygen Content in Nanoscale Zero-Valent Iron

机译:程序升温还原法测量纳米零价铁中的氧含量

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Nanoscale zerovalent iron (nZVI) has increasingly been used for environmental remediation and in toxic waste treatment. Most applications exploit its large surface area and high reactivity, the latter being a function of zerovalent iron content. In this work, temperature programmed reduction was applied to measure oxygen in nZVI. Iron oxides in nZVI were reduced by hydrogen to form metallic iron and water, which was then measured with an online mass spectrometer to determine oxygen content of the sample. For fresh nZVI prepared by sodium borohydride reduction of iron salts, average oxygen content was 8.21%. Total iron content was approximately 90.35% by the method of acid digestion; Fe(lll) content was estimated at 14.37%, and that of zerovalent iron [Fe(0)] at 75.98%. The oxygen content quickly increased to 26.14% after purging with oxygen for four hours. Several othertechniques were also used to characterize the iron nanoparticles. High resolution TEM provided direct evidence of the oxide shell structure and indicated that the shell thickness was predominantly in the range of 2-4 nm. The surface elemental composition was determined from high-resolution X-ray photoelectron spectroscopy. The nZVI oxygen content results fill a knowledge gap on nZVI composition.
机译:纳米级零价铁(nZVI)已越来越多地用于环境修复和有毒废物处理。大多数应用利用其大表面积和高反应活性,后者是零价铁含量的函数。在这项工作中,采用程序升温还原法测量nZVI中的氧气。 nZVI中的氧化铁被氢还原形成金属铁和水,然后用在线质谱仪对其进行测定,以确定样品中的氧含量。对于通过硼氢化钠还原铁盐制备的新鲜nZVI,平均氧含量为8.21%。用酸消解法测得总铁含量约为90.35%。 Fe(III)含量估计为14.37%,零价铁[Fe(0)]含量为75.98%。用氧气吹扫四个小时后,氧气含量迅速增加到26.14%。还使用了其他几种技术来表征铁纳米颗粒。高分辨率TEM提供了氧化物壳结构的直接证据,并表明壳厚度主要在2-4 nm范围内。表面元素组成由高分辨率X射线光电子能谱确定。 nZVI含氧量结果填补了nZVI组成方面的知识空白。

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