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Efficient Solar‐Thermal Distillation Desalination Device by Light Absorptive Carbon Composite Porous Foam

机译:吸光碳复合多孔泡沫高效的太阳热蒸馏淡化装置

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摘要

Solar‐thermal driven desalination based on porous carbon materials has promise for fresh water production. Exploration of high‐efficiency solar desalination devices has not solved issues for practical application, namely complicated fabrication, cost‐effectiveness, and scalability. Here, direct solar‐thermal carbon distillation (DS‐CD) tubular devices are introduced that have a facile fabrication process, are scalable, and use an inexpensive but efficient microporous graphite foam coated with carbon nanoparticle and superhydrophobic materials. The “black” composite foam serving as a solar light absorber heats up salt water effectively to produce fresh water vapor, and the superhydrophobic surface of the foam traps the liquid feed in the device. Two proof‐of‐principle distillation systems are adopted, i.e., solar still and membrane distillation and the fabricated devices are evaluated for direct solar desalination efficiency. For the solar still, nanoparticle and fluorosilane coatings on the porous surface increase the solar energy absorbance, resulting in a solar‐steam generation efficiency of 64% from simulated seawater at 1 sun. The membrane distillation demonstrates excellent vapor production (≈6.6 kg m‐2 h‐1) with >99.5% salt rejection under simulated 3 sun solar‐thermal irradiation. Unlike traditional solar desalination, the adaptable DS‐CD can easily be scaled up to larger systems such as high‐temperature tubular modules, presenting a promising solution for solar‐energy‐driven desalination.
机译:基于多孔碳材料的太阳热驱动淡化技术有望用于淡水生产。对高效太阳能淡化设备的探索尚未解决实际应用中的问题,即复杂的制造,成本效益和可扩展性。在这里,介绍了直接太阳热碳蒸馏(DS-CD)管状设备,该设备制造工艺简单,可扩展,并使用涂有碳纳米颗粒和超疏水材料的廉价但高效的微孔石墨泡沫。用作太阳光吸收剂的“黑色”复合泡沫有效地加热盐水以产生淡水蒸气,并且泡沫的超疏水表面将液体进料捕获在设备中。采用了两种原理验证的蒸馏系统,即太阳能蒸馏和膜蒸馏,并且对所制造的设备进行了直接太阳能脱盐效率的评估。对于太阳能蒸馏器,多孔表面上的纳米颗粒和氟硅烷涂层可提高太阳能吸收率,从而在1个太阳下模拟海水产生的太阳蒸汽发电效率为64%。膜蒸馏显示出优异的蒸气产生(≈6.6kg m -2 h -1 ),在模拟的3太阳日光热辐射下,盐分截留率> 99.5%。与传统的太阳能海水淡化不同,可适应的DS-CD可以轻松扩展到更大的系统,例如高温管状模块,为太阳能驱动的海水淡化提供了有希望的解决方案。

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