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Sepiolite and sepiolite-bound humic acid interactions in alkaline media and the mechanism of the formation of sepiolite-humic acid complexes

机译:在碱性介质中海泡石和海泡石结合的腐殖酸相互作用以及海泡石-腐殖酸复合物形成的机理

摘要

The surface-controlled reactions and interfaces of clays and/or clay minerals are strongly determined by the adsorption of dissolved humic substances which have surface active characters. Consequently, this may lead to an improved understanding of organo-clay complexes for remediation purposes of polluted areas. The interactions between sepiolite and sepiolite-bound humic acid (HA), and its influence on the mechanism of the formation of sepiolite-humic acid complexes were examined by characterizing the structure of sepiolite through UV/Vis spectroscopy, field emission scanning electron microscopy (SEM+FEG), specific surface area, pore size and volume, and Fourier transform infrared spectroscopy (FTIR). The UV-VIS spectral results of the raw sepiolite showed that there is no correlation between UV254 and the amount of humic substance released from sepiolite is dependent on increasing extraction time. The low values of humification index of the sepiolite confirmed the presence of HA with higher, and similar molecular weight, particle size, humification degree and aromaticy. Hence, it can be concluded that HA groups are presumably associated with the large quantity of silanol groups located on the sepiolite external surface preferentially through H-bonds and/or surface complexation interactions between the functional groups in HA and dissolved metal cations (Mn+). This finding is in good agreement with results from FTIR and SEM-FEG investigations. EDAX analysis of the HA-extracted sepiolite illustrated a strong decrease in Mg2+, Ca2+ and K+ content indicating that electrically charged sites on HA may form metal complexes of high stability through chelation.
机译:粘土和/或粘土矿物的表面控制反应和界面是通过吸附具有表面活性特征的腐殖质的强烈决定的。因此,这可以导致对用于污染区域修复的有机粘土配合物的更好理解。通过紫外/可见光谱,场发射扫描电子显微镜(SEM)表征海泡石的结构,研究了海泡石与海泡石结合的腐殖酸(HA)之间的相互作用及其对海泡石-腐殖酸复合物形成机理的影响。 + FEG),比表面积,孔径和体积,以及傅立叶变换红外光谱(FTIR)。原始海泡石的UV-VIS光谱结果表明,UV254与海泡石释放的腐殖质含量之间没有相关性,这取决于提取时间的延长。海泡石的腐殖化指数值低证实了HA的存在,分子量,粒径,腐化度和芳族化合物均较高且相似。因此,可以得出结论,认为HA基团优选地通过H键和/或HA中的官能团与溶解的金属阳离子(Mn +)之间的表面络合相互作用与位于海泡石外表面上的大量硅烷醇基团缔合。这一发现与FTIR和SEM-FEG研究的结果非常吻合。对HA提取的海泡石的EDAX分析表明,Mg2 +,Ca2 +和K +含量大大降低,表明HA上的带电位点可能通过螯合形成高稳定性的金属配合物。

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    Sabah E; Ouki Sabeha;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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