Effect of Droplet-Removal Processes on Fog-Harvesting Performance on Wettability-Controlled Wire Array with Staggered Arrangement.

IF 3.7 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Langmuir Pub Date : 2024-08-13 Epub Date: 2024-07-30 DOI:10.1021/acs.langmuir.4c01942
Yutaka Yamada, Junya Oka, Kazuma Isobe, Akihiko Horibe
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Abstract

Development of freshwater resources is vital to overcoming severe worldwide water scarcity. Fog harvesting has attracted attention as a candidate technology that can be used to obtain fresh water from a stream of foggy air without energy input. Drainage of captured droplets from fog harvesters is necessary to maintain the permeability of harp-shaped harvesters. In the present study, we investigated the effect of the droplet-removal process on the amount of water harvested using a harvester constructed by wettability-controlled wires with an alternating and staggered arrangement. Droplet transfer from hydrophobic to hydrophilic wires, located upstream and downstream of the fog flow, respectively, was observed with a fog velocity greater than 1.5 m/s. The proportion of harvesting resulting from droplet transfer exceeded 30% of the total, and it reflected more than 20% increase of the harvesting performance compared with that of a harvester with wires of the same wettability: this value varied with the adhesive property of the wires and fog velocity. Scaled-up and multilayered harvesters were developed to enhance harvesting performance. We demonstrated certain enhancements under multilayered conditions and obtained 15.99 g/30 min as the maximum harvested amount, which corresponds to 13.3% of the liquid contained in the fog stream and is enhanced by 10% compared with that without droplet transfer.

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雾滴去除过程对交错排列的湿润性控制导线阵列的雾收性能的影响
开发淡水资源对于克服全球严重缺水问题至关重要。雾气收集技术作为一种无需输入能源就能从雾气流中获取淡水的候选技术备受关注。为了保持竖琴状收集器的透气性,有必要将捕获的雾滴从收集器中排出。在本研究中,我们研究了水滴清除过程对使用交替交错排列的润湿性可控金属丝制造的收获机所收获的水量的影响。当雾速大于 1.5 米/秒时,可观察到水滴分别从位于雾流上游和下游的疏水丝向亲水丝转移。液滴转移产生的收获比例超过总收获量的 30%,与具有相同润湿性的金属丝的收获机相比,其收获性能提高了 20%以上:该数值随金属丝的粘合特性和雾化速度而变化。为了提高收割性能,我们开发了按比例放大的多层收割机。我们证明了多层条件下的某些改进,并获得了 15.99 克/30 分钟的最大收获量,相当于雾流中所含液体的 13.3%,与无液滴传输相比提高了 10%。
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来源期刊
Langmuir
Langmuir 化学-材料科学:综合
CiteScore
6.50
自引率
10.30%
发文量
1464
审稿时长
2.1 months
期刊介绍: Langmuir is an interdisciplinary journal publishing articles in the following subject categories: Colloids: surfactants and self-assembly, dispersions, emulsions, foams Interfaces: adsorption, reactions, films, forces Biological Interfaces: biocolloids, biomolecular and biomimetic materials Materials: nano- and mesostructured materials, polymers, gels, liquid crystals Electrochemistry: interfacial charge transfer, charge transport, electrocatalysis, electrokinetic phenomena, bioelectrochemistry Devices and Applications: sensors, fluidics, patterning, catalysis, photonic crystals However, when high-impact, original work is submitted that does not fit within the above categories, decisions to accept or decline such papers will be based on one criteria: What Would Irving Do? Langmuir ranks #2 in citations out of 136 journals in the category of Physical Chemistry with 113,157 total citations. The journal received an Impact Factor of 4.384*. This journal is also indexed in the categories of Materials Science (ranked #1) and Multidisciplinary Chemistry (ranked #5).
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