首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Mechanism of carboxymethyl chitosan hybrid montmorillonite and adsorption of Pb(II) and Congo red by CMC-MMT organic-inorganic hybrid composite
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Mechanism of carboxymethyl chitosan hybrid montmorillonite and adsorption of Pb(II) and Congo red by CMC-MMT organic-inorganic hybrid composite

机译:CMC-MMT有机 - 无机杂交复合材料羧甲基壳聚糖杂交锰酸盐杂交锰矿及PB(II)和刚果红的机理

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The carboxymethyl-chitosan-montmorillonite (CMC-MMT) organic-inorganic hybrid material was applied to adsorb Pb(II) and Congo red (CR) anionic dye from aqueous solution. Molecular dynamics(MD) simulation was carried out to reveal the mechanism of CMC hybrid MMT. The results suggested that CMC has been adsorbed on the interlayer space and surface of MMT, hydrogen bonds had been formed between hydroxyl & carboxyl groups of CMC with the surface of MMT, Van der Waals interaction was also existed, while amino groups of CMC hadn't obvious interaction with the surface of MMT. Batch experiments were executed to investigate the adsorption effect of CMC-MMT was compared with Na-MMT and CMC. The results showed that CMC-MMT exhibited the higher adsorption capacity than Na-MMT and CMC, The OH and COOH or NH2 groups of CMC chains may serve as electrostatic interaction active sites and coordination sites, which improved the adsorption performance of CMC-MMT on Pb(II), and the insertion of CMC enlarged the inter-layer space of MMT, resulting in more surface active sites in the CMC-MMT hybrid composite, which increased the adsorption of organic pollutant CR. The kinetic and isotherm studies indicated that the pseudo-second-order and the Langmuir model well described the adsorption equilibrium of Pb(II) and CR on CMC-MMT. (C) 2020 Published by Elsevier B.V.
机译:将羧甲基 - 壳聚糖锰矿(CMC-MMT)有机 - 无机杂化材料施用于来自水溶液的Pb(II)和刚果红色(Cr)阴离子染料。进行分子动力学(MD)模拟以揭示CMC杂交MMT的机理。结果表明,CMC已被吸附在MMT的层间空间和表面上,在CMC的羟基和羧基与MMT的表面之间形成氢键,van der WALS相互作用也存在,而CMC HANN的氨基与MMT的表面相互作用。执行批量实验以研究CMC-MMT的吸附效果与Na-MMT和CMC进行比较。结果表明,CMC-MMT表现出比NA-MMT和CMC的吸附容量较高,CMC链的OH和COOH或NH 2组可以用作静电相互作用的活性位点和配位位点,这改善了CMC-MMT的吸附性能PB(II)和CMC的插入扩大了MMT的层间空间,导致CMC-MMT杂化复合材料中的更多表面活性位点,其增加了有机污染物Cr的吸附。动力学和等温的研究表明,伪二阶和朗米尔模型良好地描述了PB(II)和CM在CMC-MMT上的吸附平衡。 (c)2020由elsevier b.v发布。

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