首页> 外文会议>ASME international mechanical engineering congress and exposition >EFFECT OF CATALYST USED IN THE SOL-GEL PROCESS ON THE MICROSTRUCTURE AND ADSORPTION/DESORPTION PERFORMANCE OF SILICA AEROGELS
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EFFECT OF CATALYST USED IN THE SOL-GEL PROCESS ON THE MICROSTRUCTURE AND ADSORPTION/DESORPTION PERFORMANCE OF SILICA AEROGELS

机译:溶胶-凝胶工艺中使用的催化剂对二氧化硅气溶胶的微观结构和吸附/脱附性能的影响

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Silica aerogels are often deployed as solid desiccants in enthalpy wheels used for dehumidifying ventilation air in air-conditioning systems. These materials have good adsorption and desorption characteristics, but microstructure affects their moisture diffusivity. As the performance of desiccant systems depends on diffusivity, it is important to select a preparation method providing the desired aerogel microstructure for enhanced dehumidification performance. A study is described in which the structure of silica aerogels prepared by the Sol-Gel process is analyzed. The same precipitator (TMOS-Tetra methyl orthosilicate) and solvent (Methanol) are used to prepare all samples. It is found that density and microstructure are highly dependent on the catalyst used in the Sol-Gel process. Dynamic vapor sorption experiments are conducted to determine diffusivity. Microscopic images are analyzed to discern the structure and to relate it to corresponding adsorption or desorption performance parameters.
机译:二氧化硅气凝胶通常作为固态干燥剂部署在用于空调系统通风空气除湿的焓轮中。这些材料具有良好的吸附和解吸特性,但微观结构会影响其水分扩散率。由于干燥剂系统的性能取决于扩散率,因此重要的是选择一种能够提供所需气凝胶微结构以增强除湿性能的制备方法。描述了一项研究,其中分析了通过溶胶-凝胶法制备的二氧化硅气凝胶的结构。使用相同的沉淀器(TMOS-四甲基原硅酸甲酯)和溶剂(甲醇)制备所有样品。发现密度和微观结构高度依赖于Sol-Gel工艺中使用的催化剂。进行动态蒸气吸附实验以确定扩散率。分析显微图像以识别该结构并将其与相应的吸附或解吸性能参数相关联。

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