材料科学
棒
蒸发
复合材料
化学工程
气象学
医学
物理
工程类
病理
替代医学
作者
Omar A. Kazi,Anthony C. Avram,Yuqin Wang,Bratin Sengupta,Yining Liu,Jeffrey W. Elam,Seth B. Darling
标识
DOI:10.1021/acsami.5c03542
摘要
Interfacial solar evaporation using three-dimensional evaporator materials has shown promise to achieve high evaporation rates exceeding the photothermal limit for water treatment and resource recovery processes. However, challenges remain in optimizing the material geometry to balance the vertical capillary uptake of water and the rate of evaporation to achieve both stable and high evaporation rates. Delignified wood can serve as a highly porous and hydrophilic substrate material to achieve high evaporation rates. In this work, we designed a suspended biochar-coated delignified wood rod evaporator and investigated the influence of its geometric parameters on its evaporation performance. The height of the evaporator exposed to air for evaporation was observed to be an important parameter in governing the evaporation rate, as shorter evaporators limited the available surface area for evaporation, but taller evaporators could not achieve sufficient rates of capillary uptake to maintain stable evaporation rates over 24 h under 1-sun illumination (1 kW m –2 ). The exposed height of the evaporator was optimized to achieve an average hourly evaporation rate of 3.05 ± 0.23 kg m –2 h –1, which could be maintained in saline solutions containing up to 5 wt % NaCl.
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