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首页> 外文期刊>Science and Technology for the Built Environment >A parametric study on mass diffusion coefficient of desiccants for dehumidification applications: Silica aerogels and silica aerogel coatings on metal foams
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A parametric study on mass diffusion coefficient of desiccants for dehumidification applications: Silica aerogels and silica aerogel coatings on metal foams

机译:用于除湿应用的干燥剂的质量扩散系数的参数研究:金属泡沫上的二氧化硅气凝胶和二氧化硅气凝胶涂层

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摘要

A separate sensible and latent cooling air-conditioning system integrated with a solid desiccant-based dehumidification device provides potential energy savings as compared to a conventional vapor compression system. Silica aerogels are hygroscopic materials that are deployed as solid desiccants for dehumidifying devices, such as an enthalpy wheel. These hygroscopic materials are highly porous and have good moisture adsorption and desorption characteristics due to the microstructure. Mass diffusivity is an important parameter that relates to the rate of the adsorption or desorption process in silica aerogels. The current study is focused on the evaluation of the mass diffusivity of solid silica aerogels and silica aerogel coatings on metal foam substrates. The porous structure of silica aerogels affects the mass diffusion coefficients. The synthesis process to manufacture the silica aerogels causes the porous structure to differ and thus impacts the mass diffusivity. The sol-gel process is used to prepare silica aerogels using various basic (ammonium hydroxide, sodium hydroxide, potassium hydroxide) and acidic (hydrofluoric acid, steric acid, hydrogen peroxide) catalysts with the same precipitator (tetramethyl orthosilicate) and solvent (methanol). The wet samples have been dried using a super-critical process to avoid internal cracking due to the capillary force. Scanning electron microscopy is used to analyze the microstructure of super-critically dried silica aerogels. The dynamic vapor sorption method is used to determine the effective mass diffusivity for the different silica aerogels. It is found that the mass diffusivity is related to the microstructure of silica aerogels, which depends on the catalysts used in the sol-gel process; however, the values for mass diffusivities for solid desiccants and desiccant coatings are similar. In addition, a parametric study is conducted to determine the effect of relative humidity and temperature on the adsorption and desorption mass diffusivity. Furthermore, the impact of the drying process and aging on the mass diffusivity of aerogels has been investigated.
机译:与传统的基于蒸汽的压缩系统相比,与基于固体干燥剂的除湿设备集成在一起的单独的显式和潜藏式冷却空调系统可节省能源。二氧化硅气凝胶是吸湿性材料,可作为固体干燥剂用于除湿设备(如焓轮)的除湿。这些吸湿材料是高度多孔的,并且由于微观结构而具有良好的吸湿和解吸特性。质量扩散率是与二氧化硅气凝胶中吸附或解吸过程速率有关的重要参数。当前的研究集中在评估金属泡沫基材上固体二氧化硅气凝胶和二氧化硅气凝胶涂层的质量扩散率。二氧化硅气凝胶的多孔结构影响质量扩散系数。制造二氧化硅气凝胶的合成过程会导致多孔结构发生变化,从而影响质量扩散率。溶胶-凝胶法用于制备二氧化硅气凝胶,该二氧化硅气凝胶使用各种碱性催化剂(氢氧化铵,氢氧化钠,氢氧化钾)和酸性催化剂(氢氟酸,硬脂酸,过氧化氢)以及相同的沉淀剂(原硅酸四甲酯)和溶剂(甲醇)制备。湿样品已使用超临界过程干燥,以避免由于毛细作用力而导致内部破裂。扫描电子显微镜用于分析超临界干燥的二氧化硅气凝胶的微观结构。动态蒸气吸附法用于确定不同二氧化硅气凝胶的有效质量扩散率。发现质量扩散率与二氧化硅气凝胶的微观结构有关,后者取决于溶胶-凝胶工艺中使用的催化剂。但是,固体干燥剂和干燥剂涂层的质量扩散率值相似。此外,进行了参数研究,以确定相对湿度和温度对吸附和解吸质量扩散率的影响。此外,已经研究了干燥过程和老化对气凝胶质量扩散率的影响。

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