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Modeling Analysis of Two Common Organic Pollutants’ Adsorption and Desorption from Activated Carbon, C_(60), and Soil Organic Carbon

机译:两种常见有机污染物吸附和活性炭,C_(60)和土壤有机碳的吸附和解吸模拟分析

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摘要

As one of the most important elements in the environment, carbon dictates the transport and fate of hydrophobic organic pollutants. Adsorption is the most common mechanism of organic pollutant attachment to carbonaceous materials, a process that can be illustrated by an adsorption isotherm. In this study, a series of adsorption–desorption experiments have been carried out to investigate the desorption hysteresis and modeling fitting of naphthalene and 1,2-dichlorobenzene with three types of carbonaceous materials, including fullerene C_(60), activated carbon, and soil organic carbon. Sorption models evaluated include Freundlich, Langmuir, two-compartment dual-equilibrium desorption, and Polanyi–Manes isotherms. Results of model fitting of adsorption–desorption data with each isotherm were compared and discussed. Moreover, the possible mechanism controlling the adsorption process can be deduced according to the Polanyi–Manes model. This is the first report concerning the comparison of model fitting of these four different adsorption isotherms based on experimentally obtained organic pollutant adsorption–desorption data. This reported study can expand our knowledge of sorption and especially desorption characteristics of organic pollutants with different forms of carbonaceous materials.
机译:作为环境中最重要的元素之一,碳决定了疏水性有机污染物的运输和命运。吸附是对碳质材料有机污染物附着的最常见机制,该方法可以通过吸附等温线说明。在该研究中,已经进行了一系列吸附 - 解吸实验,以研究萘和1,2-二氯苯的解吸滞后和建模配合,其中三种碳质材料,包括富勒烯C_(60),活性炭和土壤有机碳。评估的吸附模型包括Freundlich,Langmuir,双隔室双均衡解吸和Polanyi-Manes等温水。比较和讨论了每个等温线的吸附解吸数据模型拟合的结果。此外,可以根据Polanyi-Manes模型推导出控制吸附过程的可能机构。这是基于通过实验获得的有机污染物吸附 - 解吸数据的这四种不同吸附等温线的模型配合比较的第一个报告。该报告的研究可以扩大我们对具有不同形式的碳质材料的有机污染物的吸附和尤其是解吸特性的知识。

著录项

  • 来源
    《Environmental Engineering Science》 |2019年第1期|136-147|共12页
  • 作者单位

    Department of Civil and Environmental Engineering Faculty of Science and Technology University of Macau;

    Department of Civil and Environmental Engineering Faculty of Science and Technology University of Macau;

    Department of Civil and Environmental Engineering Rice University;

    Department of Civil and Environmental Engineering Rice University|Nanosystems Engineering Research Center for Nanotechnology-Enabled Water Treatment Rice University;

    Department of Civil and Environmental Engineering Rice University|Nanosystems Engineering Research Center for Nanotechnology-Enabled Water Treatment Rice University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chemical kinetics and equilibria; colloids; sorption; thermodynamics and equilibrium;

    机译:化学动力学和均衡;胶体;吸附;热力学和均衡;
  • 入库时间 2022-08-18 21:49:27

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