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用于同时集水和集盐的分离式太阳能界面蒸发系统设计

Design of a Separated Solar Interfacial Evaporation System for Simultaneous Water and Salt Collection.

作者信息

Chen Kai, Li Lingxiao, Zhang Junping

机构信息

Center of Eco-Material and Green Chemistry, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, P. R. China.

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 15;13(49):59518-59526. doi: 10.1021/acsami.1c18379. Epub 2021 Dec 1.

Abstract

Solar-driven interfacial evaporation (SIE) is very promising to alleviate the freshwater scarcity issue. However, salt deposition on the sample surface will reduce evaporation performance, and compromised light absorption will result in a low water collection rate in conventional SIE apparatuses. Here, we report the design of a separated SIE system composed of a polypyrrole@CoO@aluminum sheet and a T-shaped superhydrophilic polyethylene/polypropylene nonwoven fabric right under the sheet. The photothermal surface exposed outside the closed SIE system is separated from the evaporation surface. Thus, salt fouling of solar evaporators is thoroughly avoided and the freshwater collection rate is greatly enhanced. Compared with conventional SIE systems, the separated SIE system has many advantages: simultaneous water and salt collection, a long-term stable evaporation rate even for concentrated brine (1.25 kg m h under 1 kW m (1 sun) illumination, 15 wt % NaCl, ≥120 h), high salt collection efficiency (≥97%), and a high water collection rate under natural sunlight, e.g., 0.72 kg m h in early spring (0.5-0.6 sun, 19-24 °C) and 0.33 kg m h in cold winter (0.3-0.4 sun, -6 to 4 °C). We foresee that the separated SIE system holds great potential for practical freshwater and salt collection from seawater.

摘要

太阳能驱动界面蒸发(SIE)对于缓解淡水短缺问题非常有前景。然而,样品表面的盐沉积会降低蒸发性能,并且在传统的SIE装置中,光吸收受损会导致低集水率。在此,我们报告了一种分离式SIE系统的设计,该系统由聚吡咯@CoO@铝板和位于板下方的T形超亲水聚乙烯/聚丙烯无纺布组成。封闭的SIE系统外部暴露的光热表面与蒸发表面分离。因此,彻底避免了太阳能蒸发器的盐污染,并且大大提高了淡水收集率。与传统的SIE系统相比,分离式SIE系统具有许多优点:同时集水和集盐,即使对于浓盐水也具有长期稳定的蒸发速率(在1 kW m²(1个太阳)光照、15 wt% NaCl条件下,≥120小时,蒸发速率为1.25 kg m⁻² h⁻¹),高盐收集效率(≥97%),以及在自然阳光下具有高集水率,例如在早春(0.5 - 0.6个太阳,19 - 24 °C)为0.72 kg m⁻² h⁻¹,在寒冷冬季(0.3 - 0.4个太阳,-6至4 °C)为0.33 kg m⁻² h⁻¹。我们预计,分离式SIE系统在从海水中实际收集淡水和盐方面具有巨大潜力。

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