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选定的新兴污染物在颗粒活性炭和颗粒状活性炭上的吸附:平衡等温线、动力学及水相基质的影响

Adsorption of selected emerging contaminants onto PAC and GAC: Equilibrium isotherms, kinetics, and effect of the water matrix.

作者信息

Real Francisco J, Benitez F Javier, Acero Juan L, Casas Francisco

机构信息

a Chemical Engineering Department , University Institute for Water, Climate Change and Sustainability Research (IACYS), Universidad de Extremadura , Badajoz , Spain.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2017 Jul 3;52(8):727-734. doi: 10.1080/10934529.2017.1301751. Epub 2017 Mar 30.

Abstract

The removal of three emerging contaminants (ECs) (amitriptyline hydrochloride (AH), methyl salicylate (MS) and 2-phenoxyethanol (PE)) dissolved in several water matrices by means of their adsorption onto powdered activated carbon (PAC) and granular activated carbon (GAC) has been investigated. When dissolved in ultrapure water, adsorption of the ECs followed the trend of AH > MS > PE, with a positive effect of the adsorbent dose. According to the analysis of the adsorption isotherms and adsorption kinetics, PAC showed strongly higher adsorption efficiency in both capacity and velocity of the adsorption, in agreement with its higher mesoporosity. Equilibrium isotherm data were fitted by Langmuir and Freundlich models. Pseudo-second order kinetics modeled very successfully the adsorption process. Finally, the effect of the presence of dissolved organic matter (DOM) in the water matrices (ultrapure water, surface water and two effluents from wastewater treatment plants) on the adsorption of the selected ECs onto PAC was established, as well as its performance on the removal of water quality parameters. Results show a negative effect of the DOM content on the adsorption efficiency. Over 50% of organic matter was removed with high PAC doses, revealing that adsorption onto PAC is an effective technology to remove both micro-pollutants and DOM from water matrices.

摘要

研究了通过将三种新兴污染物(ECs)(盐酸阿米替林(AH)、水杨酸甲酯(MS)和2-苯氧基乙醇(PE))吸附到粉末活性炭(PAC)和颗粒活性炭(GAC)上,来去除溶解在几种水基质中的这些污染物的方法。当溶解在超纯水中时,ECs的吸附遵循AH>MS>PE的趋势,吸附剂剂量有积极影响。根据吸附等温线和吸附动力学分析,PAC在吸附容量和速度方面均表现出更高的吸附效率,这与其更高的中孔率相符。平衡等温线数据用Langmuir和Freundlich模型拟合。准二级动力学非常成功地模拟了吸附过程。最后,确定了水基质(超纯水、地表水和两个污水处理厂的出水)中溶解有机物(DOM)的存在对所选ECs在PAC上吸附的影响,以及其对去除水质参数的性能。结果表明DOM含量对吸附效率有负面影响。高剂量的PAC可去除超过50%的有机物,表明在PAC上吸附是从水基质中去除微污染物和DOM的有效技术。

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