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Changes in humic acid conformation during coagulation with ferric chloride: Implications for drinking water treatment

机译:氯化铁凝结过程中腐殖酸构象的变化:对饮用水处理的影响

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摘要

Electrophoretic mobility, pyrene fluorescence, surface' tension measurements, transmission electron microscopy on resin-embedded samples, and X-ray microscopy (XRM) were combined to characterize the aggregates formed from humic colloids and hydrolyzed-Fe species under various conditions of pH and mixing. We show that, at low coagulant concentration, the anionic humic network is reorganized upon association with cationic coagulant species to yield more compact structures. In particular, spheroids about 80 nm in size are evidenced by XRM at pH 6 and 8 just below the optimal coagulant concentration. Such reorganization of humic colloids does not yield surface-active species, and maintains negative functional groups on the outside of humic/hydrolyzed-Fe complex. We also observe that the humic network remains unaffected by the association with coagulant species up to the restabilization concentration.rnUpon increasing the coagulant concentration, restructuration becomes limited: indeed, the aggregation of humic acid with hydrolyzed-Fe species can be ascribed to a competition between humic network reconformation rate and collision rate of destabilized colloids. A decrease in stirring favors the shrinkage of humic/hydrolyzed-Fe complexes, which then yields a lower sediment volume. Elemental analyses also reveal that the iron coagulant species are poorly hydrolyzed in the destabilization range. This suggests that destabiliza-tion mechanisms such as sweep flocculation or adsorption onto a hydroxyde precipitate are not relevant to our case. A neutralization/complexation destabilization mechanism accompanied by a restructuration of flexible humic network is then proposed to occur in the range of pHs investigated.
机译:结合电泳迁移率,pyr荧光,表面张力测量,树脂包埋样品的透射电子显微镜和X射线显微镜(XRM),以表征在各种pH和混合条件下由腐殖胶体和水解铁物种形成的聚集体。我们显示,在低凝结剂浓度下,与阳离子凝结剂物种缔合后,阴离子腐殖酸网络将重组,从而产生更紧凑的结构。特别地,在恰好低于最佳混凝剂浓度的pH为6和8的XRM可以证明大小约为80 nm的球状体。腐殖质胶体的这种重组不会产生表面活性物质,并且在腐殖质/水解-Fe络合物的外部保持负官能团。我们还观察到,腐殖质网络仍然不受与凝结剂种类的关系影响,直至达到再稳定化浓度。rn随着凝结剂浓度的增加,重组变得有限:实际上,腐殖酸与水解的Fe物种的聚集可归因于不稳定的胶体的腐殖质网络重构率和碰撞率。搅拌的减少有利于腐殖质/水解铁络合物的收缩,然后产生较低的沉积物体积。元素分析还显示,铁凝结剂在不稳定范围内水解不良。这表明去稳定机制,如吹扫絮凝或吸附到羟基沉淀上与我们的情况无关。然后提出了中和/复合去稳定机制以及柔性腐殖质网络的重构,该机制发生在所研究的pH范围内。

著录项

  • 来源
    《Water Research》 |2008年第9期|2111-2123|共13页
  • 作者单位

    LEM-ENSG/INPL-CNRS, Nancy University, Pole de l'Eau 15 Avenue du Charmois, BP 40, 54501 Vandoeuvre Cedex, France ENSAI-IUT, University of Ngaoundere, P.O. Box 455, Cameroon;

    LEM-ENSG/INPL-CNRS, Nancy University, Pole de l'Eau 15 Avenue du Charmois, BP 40, 54501 Vandoeuvre Cedex, France;

    ENSAI-IUT, University of Ngaoundere, P.O. Box 455, Cameroon;

    UMR 7630 CNRS-INPL-ENSIC, Nancy Uniuersity, 1 rue Granduille, BP 451, 54500 Nancy, France;

    UMR 7630 CNRS-INPL-ENSIC, Nancy Uniuersity, 1 rue Granduille, BP 451, 54500 Nancy, France;

    Institute for X-ray Physics, Uniuersity Georgia Augusta, Geistrasse 11, D-37073 Goettingen, Germany;

    Service Commun de Microscopie, Nancy University, BP 239, 54500 Vandoeuure Cedex, France;

    ESPCI, 10 rue Vauquelin, 75231 Paris Cedex, France;

    LEM-ENSG/INPL-CNRS, Nancy University, Pole de l'Eau 15 Avenue du Charmois, BP 40, 54501 Vandoeuvre Cedex, France;

    ENSAI-IUT, University of Ngaoundere, P.O. Box 455, Cameroon;

    LPMC-CNRS, Ecole Polytechnique, 91128 Palaiseau Cedex, France;

    LEM-ENSG/INPL-CNRS, Nancy University, Pole de l'Eau 15 Avenue du Charmois, BP 40, 54501 Vandoeuvre Cedex, France;

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

    coagulation; humic substances; ferric chloride; X-ray microscopy; pyrene fluorescence;

    机译:凝结;腐殖质;氯化铁;X射线显微镜;fluorescence荧光;
  • 入库时间 2022-08-17 13:52:39

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