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Highly efficient three-dimensional solar evaporator for high salinity desalination by localized crystallization

机译:高效的三维太阳蒸发器,用于通过局部结晶高盐度脱盐

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Solar-driven water evaporation represents an environmentally benign method of water purification/desalination. However, the efficiency is limited by increased salt concentration and accumulation. Here, we propose an energy reutilizing strategy based on a bio-mimetic 3D structure. The spontaneously formed water film, with thickness inhomogeneity and temperature gradient, fully utilizes the input energy through Marangoni effect and results in localized salt crystallization. Solar-driven water evaporation rate of 2.63?kg?msup-2/sup?hsup-1/sup, with energy efficiency of 96% under one sun illumination and under high salinity (25?wt% NaCl), and water collecting rate of 1.72?kg?msup-2/sup?hsup-1/sup are achieved in purifying natural seawater in a closed system. The crystalized salt freely stands on the 3D evaporator and can be easily removed. Additionally, energy efficiency and water evaporation are not influenced by salt accumulation thanks to an expanded water film inside the salt, indicating the potential for sustainable and practical applications.
机译:太阳能驱动的水蒸发代表了一种环境良好的水净化/脱盐方法。然而,效率受到盐浓度和积累的增加。在这里,我们提出了一种基于生物模拟3D结构的能量再利用策略。自发形成的水膜,厚度不均匀性和温度梯度,充分利用了通过Marangoni效应的输入能量,并导致局部盐结晶。太阳能驱动的水蒸发速率为2.63Ω·kg?m -2 ,其在一个太阳照明和高盐度下的能量效率> 96%(25在纯化系统中净化天然海水中,实现了1.72×kgαm -2℃的水收集率为1.72Ωkg?m -2℃。结晶盐自由地站在3D蒸发器上,可以轻松移除。此外,由于盐内的膨胀水膜,能量效率和水蒸发不会受盐累积的影响,表明可持续和实际应用的潜力。

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