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Modeling Competitive Adsorption of Copper(II), Lead(II), and Cadmium(II) by Kaolinite-Based Clay Mineral/ Humic Acid System

机译:高岭石基粘土矿物/腐殖酸系统模拟铜,铅,镉的竞争吸附

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摘要

The aim of this work is to investigate and model the simultaneous adsorption of Cu(II), Cd(II), and Pb(II) in the presence and absence of humic acid on kaolinite-based clays. The preliminary capacity estimation of clays for metal was made with the use of a modified Langmuir approach, and adsorption data collected at various pH were processed using the FITEQL 3.2 computer program, to establish the model. The three types of surface sites responsible for adsorption were considered to be the permanent charge sites X_2~(2-), and variable charge sites comprised of≡S_1OH silanol groups and ≡S_2OH aluminol groups of kao-linite-based clays. Heavy metal cations were assumed to bind to the surface in the form of outer sphere and inner sphere monodentate complexes. When humic acid was added, divalent metal ion adsorption was modeled using a multisite binding model by the aid of FITEQL 3.2. Since the stability of the ternary surface complexes in the presence of humic acid was higher than that of the corresponding binary heavy metal cation complexes, the adsorption versus pH curves were steeper (and distinctly S-shaped) compared with the tailed curves observed in binary clay-rnmetal ion systems, probably due to the fact that humic acid-coated kaolinite essentially constituted the active surface for metal sorption. Although competitive metal adsorption from (metal ions mixtur-e+bumate) solutions was generally lower than those from individual metal ion solutions, Cd~(2+), being the metal ion with the highest affinity toward permanent charge sites, was the least affected ion at relatively low pH from competitive adsorption.
机译:这项工作的目的是研究和建模在有和没有腐殖酸的情况下,高岭石基粘土对Cu(II),Cd(II)和Pb(II)的同时吸附。使用改进的Langmuir方法对金属粘土的初步容量进行初步估算,并使用FITEQL 3.2计算机程序处理在各种pH值下收集的吸附数据,以建立模型。三种负责吸附的表面位点被认为是永久电荷位点X_2〜(2-),由高岭土基粘土的≡S_1OH硅烷醇基和≡S_2OH铝醇基组成的可变电荷位点。假定重金属阳离子以外球和内球单齿络合物的形式结合到表面。当添加腐殖酸时,借助FITEQL 3.2使用多位点结合模型对二价金属离子吸附进行建模。由于在腐殖酸存在下三元表面配合物的稳定性高于相应的二元重金属阳离子配合物,因此与二元粘土中观察到的拖尾曲线相比,其吸附-pH曲线更陡峭(明显呈S形)。 -金属离子系统,可能是由于腐殖酸涂层的高岭石基本上构成了金属吸附的活性表面。尽管(金属离子mixtur-e + bumate)溶液中的竞争性金属吸附通常比单个金属离子溶液中的竞争性吸附低,但Cd〜(2+)是对永久电荷位点亲和力最高的金属离子,受影响最小。竞争性吸附在相对较低pH值下产生的离子

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  • 来源
    《Environmental progress & sustainable energy》 |2009年第4期|493-506|共14页
  • 作者单位

    Faculty of Engineering, Department of Chemistry, Istanbul University, Avcilar, Istanbul 34320, Turkey;

    Faculty of Engineering, Department of Chemistry, Istanbul University, Avcilar, Istanbul 34320, Turkey;

    Forschungszentrum Karlsruhe, Institute for Technical Chemistry, Section WGT, P.O. Box 3640, D-76021 Karlsruhe, Germany;

  • 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

    heavy metals; competitive adsorption; clay; FITFEQL; adsorption modeling;

    机译:重金属;竞争性吸附;粘土;FITFEQL;吸附模型;

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