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The pore network and the adsorption characteristics of mesoporous silica aerogel: adsorption kinetics on a timescale of seconds

机译:介孔二氧化硅气凝胶的孔网络和吸附特性:数秒内的吸附动力学

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摘要

Mesoporous silica aerogel particles of ca. 5 mu m in diameter can be conveniently produced by grinding in an aqueous phosphate buffer at pH 7. The pores in the suspended aerogel particles are spherical and their diameter is 18-20 nm, as measured by NMR cryoporometry. NMR diffusiometry revealed that diffusion of water is hindered inside the pores of the aerogel. In spite of steric hindrance, bulk water and pore water exchange rapidly on the millisecond timescale in the suspension, indicating a highly interconnected pore network. The adsorption of methylene blue (MB), as a model compound, was studied on the silica aerogel particles. The process was followed by on-line UV-Vis spectrophotometry after injecting the dye into the aerogel suspension. Biphasic kinetics were observed with the first process complete in ca. 80 s and the second in ca. 600 s. A detailed kinetic model was developed for the interpretation of the results. It postulates a relatively fast adsorption process with Langmuir-type kinetics, and the aggregation of aerogel particles covered by the dye on a longer timescale. The aggregates are involved in a reversible sedimentation process which actually removes MB from the suspension.
机译:约中孔二氧化硅气凝胶颗粒。通过在pH 7的磷酸盐水溶液中研磨,可以方便地制备直径为5μm的颗粒。悬浮颗粒在气凝胶中的孔呈球形,其直径为18-20 nm(通过NMR低温法测量)。 NMR扩散测定法表明,水的扩散受阻在气凝胶孔内。尽管存在位阻,但悬浮液中的大量水和孔隙水仍在毫秒时间内迅速交换,表明孔隙网络高度互连。研究了作为模型化合物的亚甲基蓝(MB)在二氧化硅气凝胶颗粒上的吸附。在将染料注入气凝胶悬浮液后,随后进行在线UV-Vis分光光度法。在第一个过程完成后,约有双相动力学。 80 s,约秒600秒开发了详细的动力学模型以解释结果。它假定具有Langmuir型动力学的相对较快的吸附过程,以及较长时间范围内被染料覆盖的气凝胶颗粒的聚集。聚集体参与可逆沉降过程,该过程实际上从悬浮液中去除了MB。

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