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Multistage and passive cooling process driven by salinity difference

机译:盐度差异驱动的多级和被动冷却过程

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Space cooling in buildings is anticipated to rise because of an increasing thermal comfort demand worldwide, and this calls for cost-effective and sustainable cooling technologies. We present a proof-of-concept multistage device, where a net cooling capacity and a temperature difference are demonstrated as long as two water solutions at disparate salinity are maintained. Each stage is made of two hydrophilic layers separated by a hydrophobic membrane. An imbalance in water activity in the two layers naturally causes a non-isothermal vapor flux across the membrane without requiring any mechanical ancillaries. One prototype of the device developed a specific cooling capacity of up to 170 W msup?2/sup at a vanishing temperature difference, considering a 3.1 mol/kg calcium chloride solution. To provide perspective, if successfully up-scaled, this concept may help satisfy at least partially the cooling needs in hot, humid regions with naturally available salinity gradients.
机译:由于全球热舒适需求增加,建筑物中的空间冷却升高,并且这次要求进行成本效益和可持续的冷却技术。我们提出了一种概念验证多级装置,其中净冷却能力和温度差异,只要保持两个不同盐度的水溶液。每个阶段由由疏水膜分开的两个亲水层制成。两层中的水活性的不平衡自然地导致膜上的非等温蒸汽助焊剂,而不需要任何机械辅助物。考虑到3.1mol / kg氯化钙溶液,该器件的一个原型在消失温度差异的情况下显影了高达170W m 2 的特定冷却能力。为了提供视角,如果成功缩放,该概念可以帮助至少部分地满足热,潮湿区域的冷却需求,其具有自然可用的盐度梯度。

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