Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
645168 | Applied Thermal Engineering | 2016 | 6 Pages |
Abstract
Shaped MIL-101 and ethanol were selected as a working pair for adsorption refrigeration in this work. The adsorption isotherm of ethanol on shaped MIL-101 (MIL-101-3) was obtained by high vacuum gravimetric method. The desorption performance of ethanol on MIL-101-3 was measured by Thermo Gravimetric Analyzer. The adsorption refrigeration performance and cyclic adsorption stability of MIL-101-3-ethanol were investigated on the simulation device of adsorption refrigeration. The results show: (1) the equilibrium adsorption capacity of ethanol on MIL-101 is 0.74âkg/kg at 25â°C. (2) The desorption peak temperature of ethanol on MIL-101-3 is 54.0â°C, and temperature of complete desorption is about 100â°C. (3) At the desorption temperature of 80â°C, the refrigeration capacity of MIL-101-3-ethanol working pair reaches 283âkJ/kg, which is 2.2 times as much as that of activated carbon-ethanol. (4) MIL-101-3 shows no significant reduction of ethanol uptake after 60 cycles, and the BrunauerâEmmettâTeller (BET) surface area only decreases by 3.3%.
Related Topics
Physical Sciences and Engineering
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Authors
Liejun Ma, Zhengqiu Rui, Qi Wu, Huan Yang, Yu Yin, Zongjian Liu, Qun Cui, Haiyan Wang,