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Synthesis and characterization of rGO/ZrO2 nanocomposite for enhanced removal of fluoride from water: kinetics, isotherm, and thermodynamic modeling and its adsorption mechanism

机译:rGO / ZrO2纳米复合材料的合成与表征,用于增强从水中的除氟:动力学,等温线和热力学模型及其吸附机理

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摘要

A nanocomposite of rGO/ZrO2 prepared by a simple hydrothermal method using GO and ZrOCl2 center dot 8H(2)O has been successfully utilized for the removal of fluoride from aqueous solutions by adsorption. The synthesized nanocomposite was characterized by various techniques, such as FT-IR, XRD, SEM, EDX, TGA, XPS, Raman spectroscopy and BET surface area measurement. Various process parameters viz. rGO/ZrO2 dose, initial fluoride concentration, temperature and pH, which influence the removal of fluoride, were studied and it was found that the maximum uptake capacity of the nanocomposite was 46 mg g(-1) at 30 degrees C, pH 7, rGO/ZrO2 dose of 0.5 g L-1 and initial fluoride concentration of 25 mg L-1. The rGO/ZrO2 possesses a high surface area (632 cm(2) g(-1)) and maximum adsorption occurs at neutral pH and ambient temperature. Therefore, rGO/ZrO2 can be used for the adsorption of fluoride without much alteration in the quality of drinking water. The experimental data was applied to various kinetics, isotherm and thermodynamic studies. The monolayer adsorption of fluoride followed a pseudo-second order kinetic model, which was found to be spontaneous and endothermic in nature. The results obtained from the current adsorption system might be helpful for designing a continuous column system for the treatment of fluoride contaminated water.
机译:通过使用GO和ZrOCl2中心点8H(2)O的简单水热法制备的rGO / ZrO2纳米复合材料已成功用于通过吸附从水溶液中去除氟化物。合成的纳米复合材料通过多种技术进行表征,例如FT-IR,XRD,SEM,EDX,TGA,XPS,拉曼光谱和BET表面积测量。各种工艺参数,即。研究了rGO / ZrO2的剂量,初始氟化物浓度,温度和pH值对脱氟的影响,发现在30℃,pH 7时,纳米复合材料的最大吸收量为46 mg g(-1)。 rGO / ZrO2剂量为0.5 g L-1,初始氟化物浓度为25 mg L-1。 rGO / ZrO2具有较高的表面积(632 cm(2)g(-1)),并且最大吸附发生在中性pH和环境温度下。因此,rGO / ZrO2可以用于氟化物的吸附,而对饮用水的质量没有太大的影响。实验数据被应用于各种动力学,等温线和热力学研究。氟化物的单层吸附遵循伪二级动力学模型,该模型被发现具有自然吸热性。从目前的吸附系统获得的结果可能有助于设计连续塔系统来处理氟化物污染的水。

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