首页> 外文会议>International Zeolite Conference pt.A; 20040425-30; Cape Town(ZA) >STRUCTURAL AND TEXTURAL EVOLUTION OF BIMODAL MESOPORE SILICA XEROGELS DURING AGING AND DRYING
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STRUCTURAL AND TEXTURAL EVOLUTION OF BIMODAL MESOPORE SILICA XEROGELS DURING AGING AND DRYING

机译:老化和干燥过程中双峰介孔二氧化硅干凝胶的结构和织构演变

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摘要

The effects of aging and drying conditions on the structural and textural properties of surfactant-templated silica xerogel with bimodal mesopore distribution characteristic (designated as BMS) prepared under base-catalyzed sol-gel process were investigated. It was found that the change of aging and drying conditions would influence not only the size and the packing geometry of surfactant-encapsulated silica primary particles, in turn the textural mesoporosity, but also the polymerization extent of framework pore wall which would determine the framework mesopore properties. Both the lower aging temperature and the higher drying temperature are conducible to the formation of a high-quality BMS silica xerogel. However, over the range studied, aging and drying conditions had no significant effect on the framework mesopore sizes, though the corresponding specific surface areas and pore volumes can be varied markedly.
机译:研究了老化和干燥条件对在碱催化溶胶-凝胶法制备的具有双峰介孔分布特征的表面活性剂模板二氧化硅干凝胶(称为BMS)的结构和织构性能的影响。发现老化和干燥条件的变化不仅会影响表面活性剂包裹的二氧化硅一次颗粒的尺寸和堆积几何形状,进而影响结构的介孔性,还会影响决定骨架介孔的骨架孔壁的聚合程度。属性。较低的老化温度和较高的干燥温度均有助于形成高质量的BMS二氧化硅干凝胶。然而,在所研究的范围内,老化和干燥条件对骨架中孔尺寸没有显着影响,尽管相应的比表面积和孔体积可以显着变化。

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