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Diffusion of Shape Stabilized PEG-SiO

机译:形状扩散稳定的PEG-SIO

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摘要

A novel form-stable phase-change material (PCM) based on facing bricks was developed by incorporating thermoregulating PEG-SiO2, synthetized by sol-gel method and based on polyethylene glycol as phase-change material and silica as stabilizer compound. The PEG-SiO2 in its liquid form (sol) is firstly adsorbed inside the porous brick and lastly stabilized (gel) by controlling its gelation time, obtaining form-stable PCMs with PEG-SiO2 contents within 15–110 wt.%. Kinetic adsorption curves of the sol into bricks having different porosities as well as maximum adsorption capacities were obtained. The effective diffusion coefficients (Deff) were estimated by means of Fick’s second law, it being possible to predict the adsorption of sol PEG-SiO2 by the brick as function of its porosity and the free diffusion coefficient. Finally, form-stable PCMs demonstrated an improvement in their thermal energy storage capacity (up to 338%), these materials being capable of buffering the indoor temperature during an entire operational day
机译:通过掺入由溶胶 - 凝胶法合成的热调节PEG-SiO 2并基于聚乙二醇作为相变材料和二氧化硅作为稳定剂化合物,开发了一种新的形状稳定的相变材料(PCM)。首先通过控制其凝胶化时间,首先将其液体形式(溶胶)的液体形式(溶胶)内吸附在多孔砖内,并在15-110重量%(重量)内用PEG-SiO 2含量获得形式稳定的PCM。获得了具有不同孔隙率和最大吸附能力的砖的动力学吸附曲线以及最大吸附能力。通过Fick的第二律估计有效的扩散系数(DEFF),可以通过其孔隙率和自由扩散系数的功能来预测砖的吸附溶胶PEG-SiO2。最后,形式稳定的PCMS展示了其热能储存能力(高达338%)的改善,这些材料能够在整个运营日内缓冲室内温度

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