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Kinetics, mechanism, isotherm and thermodynamic studies of liquid phase adsorption of Pb2+ onto wood activated carbon supported zerovalent iron (WAC-ZVI) nanocomposite

机译:活性炭负载零价铁(WAC-ZVI)纳米复合材料液相吸附Pb2 +的动力学,机理,等温线和热力学研究

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The kinetics, mechanism, isotherm, and thermodynamics of adsorption of Pb~(2+) onto wood-activated carbon-supported zerovalent iron (WAC-nZVI) nanocomposite was successfully studied. WAC-nZVI was characterized by a combination of spectroscopic and analytical techniques (BET, PZC, FTIR, SEM, and EDX). BET surface area was 101.50?m~(2)/g and BJH Adsorption average pore diameter 116.73 ?. The adsorption of Pb~(2+) studied in batch process depends on various operational parameters ranging from effect of pH to ionic strength. Kinetics data were best described by pseudo-second-order model based on high initial adsorption rate, h_(2) (166.67 mgg~(?1)?min~(?1)) and correlation coefficient (R ~(2)??0.99). The mechanism was controlled by both external and intraparticle diffusion models confirmed by Bangham and Boyd models. Equilibrium data were fitted to seven isotherm models. The Langmuir monolayer adsorption capacity (77.52?m~(2)/g) surpassed those previously investigated for adsorption of Pb~(2+) onto nanoadsorbents. Validity of kinetics and isotherm models was studied using three statistical models. Post-adsorption characterization by SEM, EDX, and FTIR confirmed the presence of Pb~(2+) on the loaded-WAC-nZVI. Thermodynamic parameters (?H ~(o), ?S ~(o), ?G ~(o)) confirmed the feasibility, spontaneity, and randomness of the adsorption process. This study revealed a great potential of novel WAC-nZVI in effective removal of Pb~(2+) from waste water.
机译:研究了Pb〜(2+)在木材活化的碳负载零价铁(WAC-nZVI)纳米复合材料上的吸附动力学,机理,等温线和热力学。 WAC-nZVI的特征在于结合了光谱学和分析技术(BET,PZC,FTIR,SEM和EDX)。 BET表面积为101.50μm〜(2)/ g,BJH吸附平均孔径为116.73μm。间歇法研究Pb〜(2+)的吸附取决于pH值到离子强度等各种操作参数。基于高初始吸附率h_(2)(166.67 mgg〜(?1)?min〜(?1))和相关系数( R〜(2) )?>?0.99)。该机制由Bangham和Boyd模型确认的外部和内部颗粒扩散模型控制。平衡数据适用于七个等温线模型。 Langmuir单层吸附容量(77.52?m〜(2)/ g)超过了以前研究的将Pb〜(2+)吸附到纳米吸附剂上的能力。使用三种统计模型研究了动力学和等温线模型的有效性。通过SEM,EDX和FTIR进行吸附后表征证实了负载的WAC-nZVI上存在Pb〜(2+)。热力学参数(ΔH〜(o),ΔS〜(o),ΔG〜(o))证实了吸附过程的可行性,自发性和随机性。这项研究揭示了新型WAC-nZVI在有效去除废水中Pb〜(2+)方面的巨大潜力。

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