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Preparation of 1D Hierarchical Material Mesosilica/Pal Composite and Its Performance in the Adsorption of Methyl Orange

机译:一维分层材料介孔二氧化硅/钯复合材料的制备及其对甲基橙的吸附性能

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This paper highlights the synthesis of a one-dimensional (1D) hierarchical material mesosilica/palygorskite (Pal) composite and evaluates its adsorption performance for anionic dye methyl orange (MO) in comparison with Pal and Mobile crystalline material-41 (MCM-41). The Mesosilica/Pal composite is consisted of mesosilica coated Pal nanorods and prepared through a dual template approach using cetyltrimethyl ammonium bromide (CTAB) and Pal as soft and hard templates, respectively. The composition and structure of the resultant material was characterized by a scanning electron microscope (SEM), transmissionelectron microscopy (TEM), N 2 adsorption-desorption analysis, small-angle X-Ray powder diffraction (XRD), and zeta potential measurement. Adsorption experiments were carried out with different absorbents at different contact times and pH levels. Compared with Pal and MCM-41, the mesosilica/Pal composite exhibited the best efficiency for MO adsorption. Its adsorption ratio is as high as 70.4%. Its adsorption equilibrium time is as short as 30 min. Results testify that the MO retention is promoted for the micro-mesoporous hierarchical structure and positive surface charge electrostatic interactions of the mesosilica/Pal composite. The regenerability of the mesosilica/Pal composite absorbent was also assessed. 1D morphology makes it facile to separate from aqueous solutions. It can be effortlessly recovered and reused for up to nine cycles.
机译:本文重点介绍了一维(1D)分级材料介观二氧化硅/凹凸棒石(Pal)复合材料的合成,并评估了其与Pal和Mobile结晶材料41(MCM-41)相比对阴离子染料甲基橙(MO)的吸附性能。 。 Mesosilica / Pal复合材料由涂有Mesosilica的Pal纳米棒组成,并通过双模板方法制备,分别使用十六烷基三甲基溴化铵(CTAB)和Pal作为软模板和硬模板。通过扫描电子显微镜(SEM),透射电子显微镜(TEM),N 2吸附-脱附分析,小角X射线粉末衍射(XRD)和ζ电势测量来表征所得材料的组成和结构。用不同的吸收剂在不同的接触时间和pH值下进行了吸附实验。与Pal和MCM-41相比,介孔二氧化硅/ Pal复合材料表现出最佳的MO吸附效率。吸附率高达70.4%。它的吸附平衡时间短至30分钟。结果证明,对于介孔二氧化硅/ Pal复合材料的微介孔层级结构和正表面电荷静电相互作用,MO保留得以提高。还评估了介孔二氧化硅/ Pal复合吸收剂的可再生性。一维形态使它易于与水溶液分离。它可以轻松恢复并重复使用多达9个周期。

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