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Development and study of iron-based nanoadsorbents

机译:铁基纳米吸附剂的开发与研究

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The application of an innovative, simple and low cost method was tested for the preparation of nanocrystalline iron hydroxides and oxyhydroxides; different iron precursors have been earlier used and combined to different volatile precipitating agents. The examined in the present product, akaganéite [a-FeO(OH)], had high surface area and definite pore size distribution. The produced materials were examined in detail (i.e. by powder X-ray diffraction, TEM and nitrogen sorption measurement). Main aim of this study was to evaluate the efficiency of the prepared material in the removal of heavy and toxic metal cations, like Cd(II), from aqueous solutions; cadmium constitutes a priority pollutant. Sorption was found to depended on the solution pH and its ionic strength. Typical isotherm models were applied and calculated the values of maximum adsorbent capacity for the metal as well as that of the enthalpy change during the removal process.
机译:测试了一种创新,简单且低成本方法在制备纳米晶态氢氧化铁和羟基氧化铁中的应用;较早使用了不同的铁前体,并将其与不同的挥发性沉淀剂结合使用。在本产品中检查的高锰酸盐[a-FeO(OH)]具有高的表面积和确定的孔径分布。详细检查了所产生的材料(即通过粉末X射线衍射,TEM和氮吸附测量)。这项研究的主要目的是评估所制备材料从水溶液中去除重金属和有毒金属阳离子(如Cd(II))的效率。镉是主要污染物。发现吸附取决于溶液的pH及其离子强度。应用典型的等温线模型,并计算了去除过程中金属的最大吸附容量值以及焓变值。

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