首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Multistep Wettability Gradient on Bioinspired Conical Surfaces for Water collection from Fog
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Multistep Wettability Gradient on Bioinspired Conical Surfaces for Water collection from Fog

机译:从雾中的水收集生物透明锥形表面上的多步润湿性梯度

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摘要

Water scarcity is on the rise globally. In severely arid deserts, nature has developed different Mechanisms to transport water collected from fog and condensation before it is evaporated. This water is either stored or consumed. Some of the studied mechanisms are Laplace pressure gradient, grooves, and gravity. Another way to transport water is through heterogeneity in wettability, in which a droplet moves from a water repelling (hydrophobic) region to a water loving (hydrophilic) region. A combination of multistep heterogeneity on a bioinspired conical surface is studied to provide fast movement of water droplets. A representative cone was selected, and its water collection rates at different wettabilities were measured.
机译:水资源稀缺在全球上升。 在严重干旱的沙漠中,自然已经开发出不同的机制,以在蒸发之前运输从雾气收集的水和冷凝。 这种水要么储存或消耗。 一些研究机构是拉普拉斯压梯度,凹槽和重力。 运输水的另一种方式是通过润湿性的异质性,其中液滴从水排斥(疏水)区域移动到水上(亲水)区域。 研究了生物悬浮锥形表面上的多步或多均匀性的组合,以提供水滴的快速运动。 选择了代表性锥形,测量了不同湿润的水收集率。

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