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Preparation and characterization of porous granular ceramic containing dispersed aluminum and iron oxides as adsorbents for fluoride removal from aqueous solution

机译:含有分散的铝和铁的氧化物作为吸附剂的多孔颗粒陶瓷的制备和表征,用于从水溶液中去除氟

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摘要

Porous granular ceramic adsorbents containing dispersed aluminum and iron oxides were synthesized by impregnating with salt solutions followed by precipitation at 600 °C. In the present work detailed studies were carried out to investigate the effect of contact time, adsorbent dose, initial solution pH and co-existing anions. Characterization studies on the adsorbent by SEM, XRD, EDS, and BET analysis were carried out to clarify the adsorption mechanism. The adsorbents were sphere in shape, 2–3 mm in particle size, highly porous and showed specific surface area of 50.69 sq m/g. The fluoride adsorption capacity of prepared adsorbent was 1.79 mg/g, and the maximum fluoride removal was obtained at pH 6. Both the Langmuir and Freundlich isotherm models were found to represent the measured adsorption data well. The experimental data were well explained with pseudo-second-order kinetic model. Results from this study demonstrated potential utility of Al/Fe dispersed in porous granular ceramics that could be developed into a viable technology for fluoride removal from aqueous solution.
机译:通过用盐溶液浸渍,然后在600°C下沉淀,可以合成出包含分散的铝和铁氧化物的多孔颗粒陶瓷吸附剂。在目前的工作中,进行了详细的研究以研究接触时间,吸附剂剂量,初始溶液的pH值和共存阴离子的影响。通过SEM,XRD,EDS和BET分析对吸附剂进行了表征研究,以阐明吸附机理。吸附剂为球形,粒径为2–3 mm,高度多孔,比表面积为50.69平方米/克。制得的吸附剂的氟化物吸附容量为1.79 mg / g,在pH值为6时可最大程度地去除氟化物。Langmuir和Freundlich等温线模型都很好地代表了测得的吸附数据。用伪二级动力学模型很好地解释了实验数据。这项研究的结果表明,分散在多孔颗粒陶瓷中的Al / Fe具有潜在的实用性,可以发展成为一种从水溶液中去除氟化物的可行技术。

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