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REMOVAL OF FLUORIDE FROM WATER BY CARBON NANOTUBE SUPPORTED ALUMINA

机译:碳纳米管支撑氧化铝去除水中的氟化物

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This paper describes a new adsorption material, carbon nanotube supported alumina, used for fluoride removal from water. The effects of calcination temperature, alumina loading and pH on fluoride removal capacity were investigated. The optimum calcination temperature for preparing the adsorbents is 450 ℃ and the largest adsorption capacity takes place at alumina loading of 30 wt%. The broad pH range of 6.0-9.0 with high adsorption capability suggests that carbon nanotube supported alumina have great potential applications in practice. The adsorption data at different pH were well fitted to the Freundlich isotherm. The kinetic studies show that the adsorption reaction of fluoride removal by carbon nanotube supported alumina can be described by a second order rate equation.
机译:本文介绍了一种新型的吸附材料,碳纳米管负载的氧化铝,用于去除水中的氟化物。研究了煅烧温度,氧化铝含量和pH值对除氟能力的影响。制备吸附剂的最佳煅烧温度为450℃,最大吸附容量发生在30 wt%的氧化铝负载量下。 pH值在6.0-9.0的宽范围内,具有高吸附能力,表明碳纳米管负载的氧化铝在实践中具有巨大的潜在应用。在不同pH值下的吸附数据与Freundlich等温线完全吻合。动力学研究表明,碳纳米管负载的氧化铝去除氟化物的吸附反应可以用二阶速率方程来描述。

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