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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Improvement of physicochemical properties of Fe2O3/MgO nanomaterials by hydrothermal treatment for dye removal from industrial wastewater
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Improvement of physicochemical properties of Fe2O3/MgO nanomaterials by hydrothermal treatment for dye removal from industrial wastewater

机译:水热处理去除工业废水中染料的方法改善Fe2O3 / MgO纳米材料的理化性能

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摘要

Three types of Fe2O3/MgO (FeMgO_(IM). FeMgO_(Co) and FeMgO_(HY)) nanomaterials were prepared by impregnation, co-precipitation and hydrothermal methods, respectively. The microporous FeMgO adsorbents were successfully used to remove synthetic textile dye (Remazol Red RB-133) by adsorption from aqueous solution. The as-prepared adsorbents were characterized by XRD, FT-IR, N2 adsorption/desorption isotherms and TEM techniques. The results showed that a nanorod-like shape with high surface area and porous structure was obtained by hydrothermal treatment. The Langmuir and Freundlich adsorption models were applied to describe the equilibrium isotherms. The equilibrium adsorption data were best fitted by Langmuir isothermal model. The removal efficiencies of dye of 50 mg L~(-1) within 19 min can be ranked as: FeMgO_(HY) >FeMgO_(IM) >FeMgO_(Co). Also, the results indicated that pseudo-first-order and intra-particle diffusion models can better describe the adsorption kinetics. The microporous FeMgO_(HY)) and FeMgO_(IM) were found to be effective adsorbentfor the removal of dye from aqueous solution due to their increase in the microporosity as well as modified surface morphologies. The highly active FeMgO_(HY) nanomaterial was evaluated for chemical oxygen demand (COD) and color reduction of a real industrial wastewater. A reduction in color and COD of 87% and 40%, respectively was achieved after 3 h from adsorption.
机译:分别通过浸渍,共沉淀和水热法制备了三种类型的Fe2O3 / MgO(FeMgO_(IM)。FeMgO_(Co)和FeMgO_(HY))纳米材料。通过从水溶液中吸附,微孔FeMgO吸附剂已成功用于去除合成纺织染料(Remazol Red RB-133)。通过XRD,FT-IR,N2吸附/解吸等温线和TEM技术对所制备的吸附剂进行表征。结果表明,通过水热处理获得了具有高表面积和多孔结构的纳米棒状形状。用Langmuir和Freundlich吸附模型描述平衡等温线。平衡吸附数据最好由Langmuir等温模型拟合。在19分钟内去除50 mg L〜(-1)的染料的效率可归为:FeMgO_(HY)> FeMgO_(IM)> FeMgO_(Co)。同样,结果表明伪一级和粒子内扩散模型可以更好地描述吸附动力学。发现微孔FeMgO_(HY)和FeMgO_(IM)是有效的吸附剂,因为它们增加了微孔率并改变了表面形态,因此可以从水溶液中去除染料。评估了高活性FeMgO_(HY)纳米材料的化学需氧量(COD)和实际工业废水的颜色还原。吸附3小时后,颜色和COD分别降低了87%和40%。

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