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A water lily–inspired hierarchical design for stable and efficient solar evaporation of high-salinity brine

机译:睡莲启发式分层设计,可稳定,高效地蒸发高盐度盐水

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In recent years, interfacial solar vapor generation has shown great potential in realizing desalination and wastewater treatment with high energy conversion efficiency. However, high evaporation rate cannot be maintained because of the seemingly unavoidable fouling or salt accumulation on the solar absorbers. The degradation accelerates as the solute concentration increases. Here, we demonstrate a water lily–inspired hierarchical structure that enables efficient evaporation (~80% solar-to-vapor efficiency) out of high-salinity brine [10 weight % (wt %)] and wastewater containing heavy metal ions (30 wt %). More notably, neither decrease in evaporation rate nor fouling on absorbers was observed during the entire evaporation process until water and solute were completely separated. With the capabilities of stable and high-rate evaporation out of high-salinity brine and the effective separation of solute from water, it is expected that this technology can have direct implications in various fields such as wastewater treatment, sea-salt production, and metal recycling.
机译:近年来,界面太阳能蒸气的产生在实现具有高能量转化效率的脱盐和废水处理方面显示出巨大潜力。然而,由于看似不可避免的结垢或盐在太阳能吸收器上的积聚,不能维持高的蒸发速率。随着溶质浓度的增加,降解加速。在这里,我们展示了一种受睡莲启发的分层结构,该结构能够从高盐度盐水[10 wt%(wt%)]和含重金属离子(30 wt%)的废水中有效蒸发(约80%的太阳能转化效率) %)。更值得注意的是,在整个蒸发过程中,直到水和溶质完全分离为止,都没有观察到蒸发速率的降低或吸收器上的结垢。凭借从高盐度盐水中稳定且高速率蒸发的能力以及从水中有效分离溶质的能力,预计该技术可在废水处理,海盐生产和金属等各个领域产生直接影响回收。

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