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Synthesis Characterization and Adsorptive Performances of a Composite Material Based on Carbon and Iron Oxide Particles

机译:碳和氧化铁颗粒复合材料的合成表征和吸附性能

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摘要

The aim of this paper was to produce a new composite material based on carbon and iron oxides, starting from soluble starch and ferric chloride. The composite material was synthesized by simple thermal decomposition of a reaction mass obtained from starch and iron chloride, in an inert atmosphere. Starch used as a carbon source also efficiently stabilizes the iron oxides particles obtained during the thermal decomposition. The reaction mass used for the thermal decomposition was obtained by simultaneously mixing the carbon and iron oxide precursors, without addition of any precipitation agent. The proper composite material can be obtained by rigorously adhering to the stirring time, temperature, and water quantity used during the preparation of the reaction mass, as well as the thermal regime and the controlled atmosphere used during the thermal decomposition. Synthesized materials were characterized using thermogravimetric analysis, X-Ray Diffraction (XRD), scanning electron microscopy (SEM), and Fourier transform infra-red spectroscopy (FT-IR). The performances of the obtained material were highlighted by studying their adsorbent properties and by determining the maximum adsorption capacity for arsenic removal from aqueous solutions.
机译:本文的目的是从可溶性淀粉和氯化铁开始生产一种基于碳和铁氧化物的新型复合材料。通过在惰性气氛中简单地热分解由淀粉和氯化铁获得的反应物料来合成复合材料。用作碳源的淀粉还可以有效地稳定在热分解过程中获得的氧化铁颗粒。通过同时混合碳和氧化铁前体而不添加任何沉淀剂来获得用于热分解的反应物料。可以通过严格遵守在制备反应物料过程中使用的搅拌时间,温度和水量以及在热分解过程中使用的热态和受控气氛来获得合适的复合材料。使用热重分析,X射线衍射(XRD),扫描电子显微镜(SEM)和傅立叶变换红外光谱(FT-IR)对合成的材料进行表征。通过研究其吸附性能并确定从水溶液中去除砷的最大吸附能力,突出了所获得材料的性能。

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