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Dye adsorption kinetics of organoamine-templated hollow silica microspheres with different porous structures

机译:不同多孔结构有机胺 - 模板中空二氧化硅微球的染料吸附动力学

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As-synthesized hollow silica microspheres with micropores and thermally treated ones with mesopores were used as adsorbents. The two types of hollow microspheres have the same particle sizes and hollow centers, but with different pore sizes, surface areas, and pore volumes. The adsorption of rhodamine 6G and methyl blue on both hollow SiO2 microspheres was investigated and compared. The time-dependent adsorption data were fitted with different kinetic models. The results indicate that the charges of the adsorbents and the dyes in water, the relative sizes of nanopores, and dye molecules played important roles in the adsorption capacity and the kinetics besides the surface area and pore volume of the adsorbents. As expected, an electrostatic attraction between the oppositely charged adsorbents and adsorbates, a large surface area and pore volume helped to increase the adsorption. More important is that the results evidence that when nanopores are relatively small compared with the size of dye molecules, dye molecules may have limited access and rate to go inside the hollows, resulting in a slow adsorption kinetics and low adsorption capacity.
机译:用微孔和具有中孔的微孔和热处理的中空二氧化硅微球作为吸附剂。两种类型的中空微球具有相同的颗粒尺寸和中空中心,但具有不同的孔径,表面积和孔体积。研究了罗丹明6G和两种中空SiO 2微球上的甲基蓝的吸附并进行比较。时间依赖的吸附数据配有不同的动力学模型。结果表明,除了表面积和吸附剂的表面积和孔体积之外,吸附剂和水中的染料,纳米孔和染料分子中的相对尺寸和染料分子在吸附能力和动力学中起重要的作用。如预期的那样,相反带电吸附剂和吸附物之间的静电吸引,大表面积和孔体积有助于增加吸附。更重要的是,结果证据表明当纳米孔与染料分子的尺寸相比相对较少时,染料分子可能具有有限的进入和速率以进入中空,导致吸附动力学缓慢和低吸附能力。

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