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Porous TiNO solar-driven interfacial evaporator for high-efficiency seawater desalination

机译:多孔TINO太阳能驱动的界面蒸发器,用于高效海水淡化

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Freshwater scarcity, one of the most serious global challenges, has threatened the development of society in many regions. Solar-driven interfacial evaporation localizing solar-to-thermal energy conversion at the vapor–liquid interface provides a new approach for seawater desalination. In this work, we reported a high-efficiency porous TiNO solar absorber for a solar-driven interfacial evaporation system. The solar absorber was prepared by depositing a solar absorbing coating of TiNO on air-laid paper. Hydrophilicity and porosity of the absorber provide sufficient capillary force to absorb water to the evaporation region, thus resulting in rapid replenishment of water and simultaneously avoiding salt precipitation. Based on the TiNO solar absorber, the interfacial evaporation system achieves a high evaporation rate of 1.33?kg?m ?2 h ?1 with an evaporation efficiency of 84.05% under 1 sun illumination and has good durability under long-time solar irradiation. Such a low-cost, high-efficiency solar-driven seawater desalination system holds the potential for rapid deployment in remote areas or isolated islands to collect freshwater.
机译:淡水稀缺是最严重的全球挑战之一,威胁到许多地区社会的发展。太阳能驱动的界面蒸发本地化蒸汽液界面的太阳能热能转换为海水淡化提供了一种新方法。在这项工作中,我们报告了一种用于太阳能驱动的界面蒸发系统的高效率多孔TINO太阳能吸收器。通过在空气包纸上沉积太阳能吸收的TINO的太阳能吸收涂层来制备太阳能吸收器。吸收剂的亲水性和孔隙率为吸收水中的足够的毛细管力,从而产生水的快速补充水并同时避免盐沉淀。基于TINO太阳能吸收器,界面蒸发系统的高蒸发速率为1.33Ω·kg≤2h≤2h≤1,蒸发效率为84.05%,在1次太阳照射下具有良好的耐用性。如此低成本,高效的太阳能驱动的海水淡化系统占据偏远地区或孤立的岛屿中快速部署的可能性,以收集淡水。

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