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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Batch and continuous flow studies of Cr(VI) adsorption from synthetic and real wastewater by magnetic pine cone composite
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Batch and continuous flow studies of Cr(VI) adsorption from synthetic and real wastewater by magnetic pine cone composite

机译:Cr(VI)通过磁松锥复合物从合成和实际废水中吸附Cr(VI)的批量和连续流动研究

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摘要

Magnetic pinecone (MNP-PCP) was synthesised via co-precipitation of Fe2+/Fe3+ onto different masses of pine to determine effect of magnetite to pine cone ratio on the Cr(VI) removal capacity. Interaction between magnetite and pine was determined using FTIR, TGA and TEM spectroscopy while iron oxide phase, possible bonding and magnetic properties were confirmed using XRD, XPS and VSM analysis. The composite with 1.5 g of pine removed more Cr(VI) at all solution pH's applied and pH 3 being optimum at which Fe(III) leached into solution was less than 0.01 mg/L. The Langmuir monolayer capacity was observed to be 15.24 mg/g at 26 degrees C while Dubinin-Radushkevish free energy ranged from 15.80 to 16.80 kJ/mol suggesting ligand-ion exchange mechanism. Dynamic studies were done using breakthrough curve to evaluate concentration effect of Cr(VI) adsorption. Thomas model best described the dynamic behaviour while desorption studies showed that four adsorption-desorption and regeneration cycles were possible with an elution efficiency >87% and only 15% loss of capacity after four cycles. Performance of MNP-PCP for real wastewater was comparable with synthetic wastewater. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:通过Fe2 + / Fe3 +的共析沉淀合成磁性松酮(MNP-PCP),在不同的松油中合成,以确定磁铁矿对Cr(VI)去除容量的胶质锥比的影响。使用FTIR,TGA和TEM光谱测定磁铁矿和松树之间的相互作用,同时使用XRD,XPS和VSM分析确认氧化氧化物相,可能的粘合和磁性。在所有溶液pH的施用和pH 3中除去具有1.5g松树的复合材料更多的Cr(vi),并且在溶液中浸出的Fe(III)的最佳溶液小于0.01mg / L.在26摄氏度下观察到Langmuir单层容量为15.24mg / g,而Dubinin-Radushkevish的自由能量范围为15.80至16.80kJ / mol,表明配体离子交换机制。使用突破性曲线进行动态研究,以评估Cr(VI)吸附的浓度效应。托马斯模型最能描述动态行为,同时解吸研究表明,在四个循环后的洗脱效率> 87%且只有15%的容量损失,可以进行四种吸附 - 解吸和再生循环。 MNP-PCP用于真正废水的性能与合成废水相媲美。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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