Institut des Sciences de La Terre D'Orléans, UMR 7327, CNRS-Université D'Orléans, 1A Rue de La Férollerie, 45071 Orléans Cedex 2, France.
Institut de Chimie Organique et Analytique, UMR 7311, CNRS-Université D'Orléans, Rue de Chartres, 45067, Orléans Cedex 2, France.
Chemosphere. 2020 Nov;259:127480. doi: 10.1016/j.chemosphere.2020.127480. Epub 2020 Jul 1.
A Na exchanged montmorillonite clay (Na-Mt) and its organoclay derivatives prepared with benzyldimethyltetradecylammonium (BDTA) cationic and polyoxyethylene (20)oleyl-ether (Brij-O20) non-ionic surfactants were used for first time at our knowledge as adsorbents the removal diverse pharmaceuticals (PPs) from samples collected in a rural wastewater facility (town of Josnes in France). The selected facility showed a poor efficiency for the elimination of PPs that were permanently release to the environment. Although involving different interactional mechanisms, the whole adsorbents Na-Mt, nonionic Brij-Mt and cationic BDTA-Mt organoclays, could remove the entire PPs of various chemical nature in a low concentration regime (ng L), where electrostatic interactions mainly controlled the adsorption. Thus, the organic PPs cations were preferentially adsorbed onto Na-Mt and Brij-Mt (with its dual hydrophilic-hydrophobic nature) while anionic PPs showed a bold affinity to BDTA-Mt. The hydrophobic environment generated by the intercalation of surfactants within the interlayer space of organoclays conferred a versatility for the adsorption of numerous PPs through weak molecular forces (Van der Waals and/or pi-pi interactions). The study confirmed the proper efficiency of the studied layered materials including organoclays and emphasized about their promising interests in water remediation strategy.
A Na 交换蒙脱石粘土 (Na-Mt) 及其用苄基二甲基十四烷基氯化铵 (BDTA) 阳离子和聚氧乙烯 (20) 油基醚 (Brij-O20) 非离子表面活性剂制备的有机粘土衍生物首次被用作吸附剂,从法国 Josnes 镇的农村废水处理设施中采集的样品中去除各种药物 (PPs)。所选设施对消除永久释放到环境中的 PPs 的效率很差。尽管涉及不同的相互作用机制,但全吸附剂 Na-Mt、非离子 Brij-Mt 和阳离子 BDTA-Mt 有机粘土可以在低浓度(ng L)范围内去除各种化学性质的所有 PPs,其中静电相互作用主要控制吸附。因此,有机 PPs 阳离子优先被吸附到 Na-Mt 和 Brij-Mt 上(具有双重亲水性-疏水性),而阴离子 PPs 则强烈倾向于与 BDTA-Mt 结合。表面活性剂在有机粘土层间空间中的插层产生的疏水环境赋予了通过弱分子力(范德华力和/或π-π相互作用)吸附众多 PPs 的多功能性。该研究证实了所研究的层状材料(包括有机粘土)的适当效率,并强调了它们在水修复策略中的潜在应用前景。