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Influence of pore structure and impregnation-drying conditions on the solid distribution in porous support materials

机译:孔结构和浸渍干燥条件对多孔载体材料固体分布的影响

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摘要

Deposition of solids within porous materials from a drying solution is an important phenomenon in numerous natural and industrial processes. A profound knowledge about influences of different parameters on the solid distribution in the material is required for an effective targeted impregnation process. Experimental investigations and simulations are used to study the influence of pore structure, drying conditions, and solute concentration on the solid distribution in porous support materials after impregnation and drying. It is found that low drying rates lead to strong solid accumulation at the material surface, whereas high drying rates reduce the solute transport to the surface and result in more uniform solid distributions. A small pore diameter and distribution width reduce solute migration during drying and lead to uniform solid distributions without being influenced by the drying conditions. A higher initial concentration of the impregnation solution causes pronounced surface accumulation, while low initial solute concentrations result in more uniform distributions. Fundamental effects during drying are captured in an existing pore network model by adaption of experimental pore structures and impregnation-drying conditions, resulting in a good general agreement of experiments with simulations.
机译:从干燥溶液中沉积多孔材料内的固体是许多天然和工业过程中的重要现象。有效靶向浸渍过程需要对材料对材料中固体分布的影响的深刻知识。实验研究和仿真用于研究浸渍干燥后孔结构,干燥条件和溶质浓度对多孔载体材料中固体分布的影响。发现低干燥率导致材料表面上的强固体积聚,而高干燥率降低了表面的溶质输送,并导致更均匀的固体分布。小孔径和分布宽度减少干燥过程中的溶质迁移,并导致均匀的固体分布而不受干燥条件的影响。浸渍溶液的更高初始浓度导致明显的表面积聚,而低初始溶质浓度导致更均匀的分布。通过适应实验孔隙结构和浸渍干燥条件,在现有的孔网络模型中捕获干燥过程中的根本效果,导致模拟实验良好的一般吻合。

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