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首页> 外文期刊>RSC Advances >Facile crosslinking synthesis of hyperbranch-substrate nanonetwork magnetite nanocomposite for the fast and highly efficient removal of lead ions and anionic dyes from aqueous solutions
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Facile crosslinking synthesis of hyperbranch-substrate nanonetwork magnetite nanocomposite for the fast and highly efficient removal of lead ions and anionic dyes from aqueous solutions

机译:高分子衬底纳米纳米磁铁矿纳米复合材料的体内交联合成,从水溶液中快速高效地清除铅离子和阴离子染料

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The aim of the present work was to investigate the effect of surface functional group density on the adsorption behaviors of functionalized mesoporous Fe _(3) O _(4) . Amino modified mesoporous Fe _(3) O _(4) (Fe _(3) O _(4) –NH _(2) ) nanoparticles were firstly prepared through a classical solvothermal method, then a novel three-dimensional hyperbranch structured nanocomposite (Fe _(3) O _(4) –HBPA) was synthesized though amino terminated hyperbranched polymer (HBPA) modification without any toxic cross-linking agent. The resulting functionalized mesoporous Fe _(3) O _(4) composites were characterized by means of TEM, SEM, FTIR, XRD, VSM, TGA and zeta potential. Adsorptive removal of Pb ~(2+) and MO in their respective single-component and binary systems was studied. For heavy metal ions (Pb ~(2+) , Hg ~(2+) , Cd ~(2+) , Cu ~(2+) etc. ) and dyes (MO, MGO, MBH, RB and CV), Fe _(3) O _(4) –HBPA showed higher removal efficiency of Pb ~(2+) and MO than Fe _(3) O _(4) –NH _(2) . The adsorption of Pb ~(2+) and MO on Fe _(3) O _(4) –HBPA was pH dependent with uptake dropping in acidic solution. The Fe _(3) O _(4) –HBPA adsorbent showed a quick adsorption rate, high adsorption capacity, and high selectivity for cationic adsorbates. The maximum adsorption capacity was as high as 285.714 mg g ~(?1) for Pb ~(2+) and 146.565 mg g ~(?1) for MO. The suitability of the Langmuir adsorption model and pseudo second-order kinetics for describing the adsorption isotherms and kinetics of Fe _(3) O _(4) –HBPA for Pb ~(2+) and MO dye was examined, respectively.
机译:本作本作的目的是研究表面官能团密度对官能化介孔Fe _(3)O _(4)的吸附行为的影响。氨基改性介孔Fe _(3)O _(4)(Fe _(3)O _(4)-NH _(2))首先通过经典的溶剂方法制备,然后是一种新型三维超高原结构纳米复合材料(Fe _(3)O _(4)-HBPA)虽然氨基封端的超支化聚合物(HBPA)改性而合成,但没有任何有毒的交联剂。通过TEM,SEM,FTIR,XRD,VSM,TGA和Zeta电位表征所得官能化的介孔Fe _(3)O _(4)复合材料。研究了它们各自的单组分和二元系统中Pb〜(2+)和Mo的吸附去除。对于重金属离子(PB〜(2+),Hg〜(2+),Cd〜(2+),Cu〜(2+)等)和染料(Mo,MgO,MBH,RB和CV),Fe _(3)O _(4)-HBPA显示PB〜(2+)和MO比FE _(3)O _(4)-NH _(2)的较高的去除效率。 PB〜(2+)和Mo对Fe _(3)O _(4)-HBPA的吸附是pH依赖于酸性溶液中的摄取滴。 Fe _(3)O _(4)-HBPA吸附剂显示出快速吸附速率,高吸附能力和对阳离子吸附剂的高选择性。对于MO的Pb〜(2+)和146.565mg g〜(α1)的最大吸附容量高达285.714mg g〜(α1)。研究了用于描述用于PB〜(3)-(4)-HBPA的吸附等温线和PB〜(2+)和MO染料的Fe _(3)o _(4)-HBPa的吸附等温线和动力学的适用性。

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