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首页> 外文期刊>Journal of nanoscience and nanotechnology >Influence of Environmental Factors on the Adsorption Capacity and Thermal Conductivity of Silica Nano-Porous Materials
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Influence of Environmental Factors on the Adsorption Capacity and Thermal Conductivity of Silica Nano-Porous Materials

机译:环境因素对二氧化硅纳米多孔材料吸附容量和导热系数的影响

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摘要

In this work, the influence of temperature and humidity environment on the water vapor adsorption capacity and effective thermal conductivity of silica nano-porous material is conducted within a relative humidity range from 15% to 90% at 25 degrees C, 40 degrees C and 55 degrees C, respectively. The experiment results show that both the temperature and relative humidity have significant influence on the adsorption capacity and effective thermal conductivity of silica nano-porous materials. The adsorption capacity and effective thermal conductivity increase with humidity because of the increases of water vapor concentration. The effective thermal conductivity increases linearly with adsorption saturation capacity at constant temperature. Because adsorption process is exothermic reaction, the increasing temperature is not conducive to the adsorption. But the effective thermal conductivity increases with the increment of temperature at the same water uptake because of the increment of water thermal conductivity with temperature Geometric models and unit cell structure are adopted to predict the effective thermal conductivity and comparisons with the experimental result are made, and for the case of moist silica nano-porous materials with high porosity no quantitative agreement is found. It is believed that the adsorbed water will fill in the nano-pores and gap and form lots of short cuts, leading to a significant reduction of the thermal resistance.
机译:在这项工作中,在25°C,40°C和55°C的相对湿度范围为15%至90%的范围内,进行了温度和湿度环境对二氧化硅纳米多孔材料的水蒸气吸附能力和有效导热率的影响。摄氏度。实验结果表明,温度和相对湿度对二氧化硅纳米多孔材料的吸附能力和有效导热率都有显着影响。由于水蒸气浓度的增加,吸附能力和有效的热导率随湿度的增加而增加。在恒定温度下,有效导热系数随吸附饱和能力线性增加。由于吸附过程是放热反应,因此升高的温度不利于吸附。但是,由于水的热导率随温度的增加,在相同的吸水量下,有效的热导率随温度的增加而增加。采用几何模型和晶胞结构来预测有效的热导率,并与实验结果进行比较。对于具有高孔隙率的潮湿二氧化硅纳米多孔材料,未找到定量协议。据信吸附的水将填充在纳米孔和间隙中并形成许多捷径,从而导致热阻的显着降低。

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