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用负载于聚合物膜中的三辛基氧化膦对酚类化合物进行固/液萃取平衡

Solid/liquid extraction equilibria of phenolic compounds with trioctylphosphine oxide impregnated in polymeric membranes.

作者信息

Praveen Prashant, Loh Kai-Chee

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, 117585, Singapore.

Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, 117585, Singapore.

出版信息

Chemosphere. 2016 Jun;153:405-13. doi: 10.1016/j.chemosphere.2016.03.053. Epub 2016 Mar 28.

Abstract

Trioctylphosphine oxide based extractant impregnated membranes (EIM) were used for extraction of phenol and its methyl, hydroxyl and chloride substituted derivatives. The distribution coefficients of the phenols varied from 2 to 234, in the order of 1-napthol > p-chlorophenol > m-cresol > p-cresol > o-cresol > phenol > catechol > pyrogallol > hydroquinone, when initial phenols loadings was varied in 100-2000 mg/L. An extraction model, based on the law of mass action, was formulated to predict the equilibrium distribution of the phenols. The model was in excellent agreement (R(2) > 0.97) with the experimental results at low phenols concentrations (<800 mg/L). At higher phenols loadings though, Langmuir isotherm was better suited for equilibrium prediction (R(2) > 0.95), which signified high mass transfer resistance in the EIMs. Examination of the effects of ring substitution on equilibrium, and bivariate statistical analysis between the amounts of phenols extracted into the EIMs and factors affecting phenols interaction with TOPO, indicated the dominant role of hydrophobicity in equilibrium determination. These results improve understanding of the solid/liquid equilibrium process between phenols and the EIMs, and these will be useful in designing phenol recovery process from wastewater.

摘要

基于三辛基氧化膦的萃取剂浸渍膜(EIM)用于萃取苯酚及其甲基、羟基和氯取代衍生物。当初始苯酚负载量在100 - 2000 mg/L范围内变化时,苯酚的分配系数在2至234之间变化,顺序为1-萘酚>对氯苯酚>间甲酚>对甲酚>邻甲酚>苯酚>儿茶酚>连苯三酚>对苯二酚。基于质量作用定律建立了一个萃取模型,以预测苯酚的平衡分布。在低苯酚浓度(<800 mg/L)下,该模型与实验结果吻合良好(R(2)>0.97)。然而,在较高的苯酚负载量下,朗缪尔等温线更适合用于平衡预测(R(2)>0.95),这表明EIMs中存在较高的传质阻力。研究环取代对平衡的影响,以及对萃取到EIMs中的苯酚量与影响苯酚与TOPO相互作用的因素进行双变量统计分析,表明疏水性在平衡测定中起主导作用。这些结果有助于加深对苯酚与EIMs之间固/液平衡过程的理解,对设计从废水中回收苯酚的工艺具有指导意义。

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