极限(数学)
环境科学
传热
工艺工程
核工程
化学
热力学
数学
工程类
物理
数学分析
作者
Adam J. Rieth,Sungwoo Yang,Evelyn N. Wang,Mircea Dincă
标识
DOI:10.1021/acscentsci.7b00186
摘要
The capture of water vapor at low relative humidity is desirable for producing potable water in desert regions and for heat transfer and storage. Here, we report a mesoporous metal-organic framework that captures 82% water by weight below 30% relative humidity. Under simulated desert conditions, the sorbent would deliver 0.82 gH2O gMOF-1, nearly double the quantity of fresh water compared to the previous best material. The material further demonstrates a cooling capacity of 400 kWh m-3 per cycle, also a record value for a sorbent capable of creating a 20 °C difference between ambient and output temperature. The water uptake in this sorbent is optimized: the pore diameter of our material is above the critical diameter for water capillary action, enabling water uptake at the limit of reversibility.
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