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Adsorptive removal of cesium ions from aqueous solutions using synthesized Prussian blue/magnetic cobalt ferrite nanoparticles

机译:使用合成普鲁士蓝/磁性钴铁氧体纳米粒子从水溶液中吸附铯离子

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摘要

Low cost nano-adsorbent [PBCoFe2O4] Prussian blue loaded magnetic cobalt ferrite was prepared using a facile method. Characterization of the synthesized adsorbent was carried out using XRD, FT-IR, TEM, and SEM. Batch technique was used to investigate the removal of cesium utilizing BPCoFe2O4. The capacity of Cs+ adsorption increased from 25 to 55 mg/g and 75 to 98 mg/g when pH increased from 2.0 to 5.0 in case of using CoFe2O4 and BPCoFe2O4, respectively. The maximum capacity for Cs+ sorption was observed around pH5.0 and 25 +/- 1 degrees C. The kinetics of the Cs+ uptake was fitted in the second-order kinetic model. The sorption of Cs+ using [PBCoFe2O4] was fitted to the Langmuir isotherm model and the calculated maximum cesium capacity was found to be 178.8 mg/g. The influence of temperature was discussed and the calculated thermodynamic parameters indicated that sorption of Cs+ using [PBCoFe2O4] is endothermic and spontaneous process. It could be concluded that Cs+ could be potentially removed from wastewater using [PBCoFe2O4].
机译:低成本纳米吸附剂[PBCOFE2O4]使用舒适方法制备普鲁士蓝载磁性钴铁氧体。使用XRD,FT-IR,TEM和SEM进行合成吸附剂的表征。用于研究利用BPCOFe2O4的去除铯的批量技术。当使用COFE2O4和BPCOFE2O4的情况下pH从2.0至5.0增加,Cs +吸附的容量从25〜55mg / g增加到55 mg / g,75至98 mg / g。在pH5.0和25 +/- 1摄氏度下观察到Cs +吸附的最大容量。CS +摄取的动力学在二阶动力学模型中装配。使用[PBCOFE2O4]的Cs +的吸附适用于Langmuir等温模型,并且发现计算的最大铯能量为178.8mg / g。讨论了温度的影响,并且计算出的热力学参数表明使用[PBCOFE2O4]的CS +的吸附是吸热和自发过程。可以得出结论,使用[PBCOFE2O4]可以从废水中潜在地除去CS +。

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