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Nanostructured mesoporous silica: influence of the preparation conditions on the physical-surface properties for efficient organic dye uptake

机译:纳米结构介孔二氧化硅:制备条件对有效吸收有机染料的物理表面性质的影响

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A series of ordered mesoporous silica such as MCM-41, SBA-3 and SBA-15, in addition to silica micro- (SM) and nano- (SN) mesoporous particles, were prepared. The preparation conditions were found to greatly influence the physical-surface properties including morphological structure, porosity, particle size, aggregate average size, surface area, pore size, pore volume and zeta potential of the prepared silica, while the chemical structure, predicted from FT-IR spectra, and the diffraction patterns, predicted from wide-angle X-ray diffraction spectra, were identical. Surface areas of approximately 1500, 1027, 600, 552 and 317?m2?g?1, pore volumes of 0.93, 0.56, 0.82, 0.72 and 0.5?cm3?g?1, radii of 2.48, 2.2, 5.66, 6.6 and 8.98?nm, average aggregate sizes of 56, 65.4, 220.9, 73, 61.1 and 261?nm and zeta potential values of ?32.8, ?46.1, ?26.3, ?31.4 and ?25.9?mV were obtained for MCM-41, SBA-3, SBA-15, SN and SM, respectively. Methylene blue dye uptake capacity of the prepared silica types was investigated using the batch technique and, in addition, the most effective material was further studied by the column flow system. The kinetics and isotherms of the uptake process were studied. The morphological structure, surface area, pore radius and zeta potential values were the most correlated factors.
机译:除了二氧化硅微(SM)和纳米(SN)介孔颗粒外,还制备了一系列有序介孔二氧化硅,例如MCM-41,SBA-3和SBA-15。发现制备条件会极大地影响物理表面性质,包括制备的二氧化硅的形态结构,孔隙率,粒径,聚集体平均粒径,表面积,孔径,孔体积和ζ电位,而化学结构是通过FT预测的-IR光谱和由广角X射线衍射光谱预测的衍射图相同。表面积约为1500、1027、600、552和317?m 2 ?g ?1 ,孔体积为0.93、0.56、0.82、0.72和0.5?cm < sup> 3 ?g ?1 ,半径为2.48、2.2、5.66、6.6和8.98?nm,平均聚集体尺寸为56、65.4、220.9、73、61.1和261nm对于MCM-41,SBA-3,SBA-15,SN和SM,分别获得α32.8,α46.1,β26.3,β31.4和α25.9ΔmV的ζ电势值。使用间歇技术研究了制备的二氧化硅类型对亚甲基蓝染料的吸收能力,此外,通过柱流系统进一步研究了最有效的材料。研究了吸收过程的动力学和等温线。形态结构,表面积,孔半径和ζ电势值是最相关的因素。

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