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Synergistic Removal of Pb(II) Cd(II) and Humic Acid by Fe3O4@Mesoporous Silica-Graphene Oxide Composites

机译:Fe3O4 @介孔二氧化硅-氧化石墨烯复合材料协同去除Pb(II)Cd(II)和腐殖酸

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摘要

The synergistic adsorption of heavy metal ions and humic acid can be very challenging. This is largely because of their competitive adsorption onto most adsorbent materials. Hierarchically structured composites containing polyethylenimine-modified magnetic mesoporous silica and graphene oxide (MMSP-GO) were here prepared to address this. Magnetic mesoporous silica microspheres were synthesized and functionalized with PEI molecules, providing many amine groups for chemical conjugation with the carboxyl groups on GO sheets and enhanced the affinity between the pollutants and the mesoporous silica. The features of the composites were characterized using TEM, SEM, TGA, DLS, and VSM measurements. Series adsorption results proved that this system was suitable for simultaneous and efficient removal of heavy metal ions and humic acid using MMSP-GO composites as adsorbents. The maximum adsorption capacities of MMSP-GO for Pb(II) and Cd (II) were 333 and 167 mg g−1 caculated by Langmuir model, respectively. HA enhances adsorption of heavy metals by MMSP-GO composites due to their interactions in aqueous solutions. The underlying mechanism of synergistic adsorption of heavy metal ions and humic acid were discussed. MMSP-GO composites have shown promise for use as adsorbents in the simultaneous removal of heavy metals and humic acid in wastewater treatment processes.
机译:重金属离子和腐殖酸的协同吸附可能非常具有挑战性。这主要是由于它们在大多数吸附材料上的竞争性吸附。为此,制备了包含聚乙烯亚胺改性的磁性介孔二氧化硅和氧化石墨烯(MMSP-GO)的分层结构复合材料。磁性介孔二氧化硅微球被合成并用PEI分子官能化,提供了许多胺基团与GO片上的羧基化学结合,并增强了污染物与介孔二氧化硅之间的亲和力。使用TEM,SEM,TGA,DLS和VSM测量来表征复合材料的特征。系列吸附结果证明,该系统适用于以MMSP-GO复合材料为吸附剂同时有效去除重金属离子和腐殖酸。朗格缪尔模型测得的MMSP-GO对Pb(II)和Cd(II)的最大吸附容量分别为333和167 mg g -1 。 HA通过在水溶液中相互作用而增强MMSP-GO复合材料对重金属的吸附。讨论了重金属离子与腐殖酸协同吸附的潜在机理。 MMSP-GO复合材料已显示出在废水处理过程中同时去除重金属和腐殖酸中用作吸附剂的前景。

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