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首页> 外文期刊>ECS Journal of Solid State Science and Technology >Synergistic Interactions between Activated Carbon Fabrics and Toxic Hexavalent Chromium
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Synergistic Interactions between Activated Carbon Fabrics and Toxic Hexavalent Chromium

机译:活性炭织物和有毒六价铬之间的协同相互作用

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摘要

The synergistic interactions between the activated carbon fabrics (ACFs) and the toxic Cr(VI) were investigated aiming to functionalize the ACFs and to remove the toxic Cr(VI). The effects of pH, treatment time, initial Cr(VI) concentration and ACFs dose on the Cr(VI) removal were studied. Different pH values had different effects on the Cr(VI) removal by ACFs, pH = 1.0 was found to be the optimum. For the pH = 1.0 solution, the Cr(VI) in the aqueous solution was reduced to Cr(III) and adsorbed onto the ACFs, and the C-O and C=O functional groups were found on the ACFs surface. The redox kinetic in the pH = 1.0 solution could be described by the pseudo-first-order model and the typical value of the pseudo-first-order rate constant was calculated to be 0.0872 min~(-1). Langmuir, Freundlich, and Temkin adsorption isotherm models were applied to describe isotherm behaviors. The Cr(VI) equilibrium data agreed well with the Langmiur isotherm model with a maximum adsorption capacity of 5.59 mg g~(-1). The ACFs could be easily regenerated by 1.0 mol L~(-1) sodium hydroxide and effectively recycled 7 times with the removal percentage decreased by 16.5%, which was caused by the irreversible formation of oxygen functional groups on the surface of ACFs.
机译:研究了活性炭织物(ACFS)与毒性Cr(VI)之间的协同相互作用,旨在使ACFS官能化并除去毒性Cr(VI)。研究了pH,治疗时间,初始Cr(VI)浓度和ACFS剂量对Cr(VI)去除的影响。不同的pH值对ACFS的CR(VI)的效果不同,发现pH = 1.0是最佳的。对于pH = 1.0溶液,将水溶液中的Cr(VI)还原为Cr(III)并吸附在ACF上,并在ACFS表面上发现C-O和C = O官能团。 pH = 1.0溶液中的氧化还原动力学可以通过伪第一阶模型描述,并且伪一阶速率常数的典型值计算为0.0872min〜(-1)。 Langmuir,Freundlich和Temkin吸附等温线型号用于描述等温行为。 CR(VI)平衡数据与Langmiur等温模型相同,最大吸附容量为5.59mg g〜(-1)。 ACF可以通过1.0mol L〜(-1)氢氧化钠容易再生,并有效地回收7次,除去百分比下降16.5%,这是由ACF表面上氧官能团的不可逆形成引起的。

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  • 作者

    Cuixia Xu; Bin Qiu; Hongbo Gu;

  • 作者单位

    Integrated Composites Lab (ICL) Dan F. Smith Department of Chemical Engineering Lamar University Beaumont Texas 77710 USA;

    Integrated Composites Lab (ICL) Dan F. Smith Department of Chemical Engineering Lamar University Beaumont Texas 77710 USA;

    Integrated Composites Lab (ICL) Dan F. Smith Department of Chemical Engineering Lamar University Beaumont Texas 77710 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 电化学工业 ;
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