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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Evaporation above a bulk water surface using an oil lamp inspired highly efficient solar-steam generation strategy
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Evaporation above a bulk water surface using an oil lamp inspired highly efficient solar-steam generation strategy

机译:使用油灯启发高效的太阳能蒸汽发生策略蒸发散装水面上方

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摘要

Inspired by the traditional oil lamp, a solar-steam generation system with the evaporation surface located above the bulk water surface is realized using a cotton strand coated with a photothermal layer of polydopamine as a wick. The strong wicking effect of the cotton strand is able to rapidly transfer a significant amount of water to the evaporation surface located at 9 cm above the bulk water surface. The capability to separate the evaporation surface from the bulk water is highly advantageous as it decreases the dissipation of heat into the bulk water. This leads to highly localized light-to-heat energy conversion, which results in outstanding solar-steam generation performance. The energy conversion efficiency for the water evaporation system reaches 88.8% under 1.0 sun irradiation. This system was applied to decrease the salinity of seawater, demonstrating that clean water could be produced from salty water via evaporation with a residual Na concentration of only approximate to 0.31 ppm under 1.0 sun. The proposed strategy is simple, and the optimized design does not require photothermal materials to float on the water surface, but rather allows the photothermal material to be fixed at a considerable distance above the water surface. The overall system is both natural and cost effective and thus shows great potential for real-world applications particularly in developing countries where natural resources are already stretched, and access to clean drinking water is not guaranteed.
机译:由传统的油灯的启发,使用涂有涂覆有聚二胺的光热层作为芯的棉花链来实现具有位于体积水面上方的蒸发表面的太阳能蒸发系统。棉花链的强大芯吸效应能够快速将大量的水转移到位于&gt的蒸发表面上,在体积水表面上方9cm。将蒸发表面与散装水分离的能力非常有利,因为它降低了热量的耗散到散装水中。这导致高度局部的光热能量转换,这导致出色的太阳能蒸汽发电性能。水蒸发系统的能量转换效率在1.0阳光照射下达到88.8%。该系统被应用于降低海水的盐度,证明清洁水可以通过蒸发通过蒸发产生,残留NA浓度仅近似为0.31ppm。所提出的策略很简单,优化的设计不需要光热材料漂浮在水面上,而是允许光热材料固定在水表面上方相当大的距离处。整体系统既自然又成本效益,因此尤其对现实世界的应用表现出巨大的潜力,特别是在自然资源已经延长的发展中国家,并且无法保证获得清洁饮用水。

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    Univ South Australia Future Ind Inst Mawson Lakes Campus Adelaide SA 5095 Australia;

    Univ South Australia Future Ind Inst Mawson Lakes Campus Adelaide SA 5095 Australia;

    Univ South Australia Future Ind Inst Mawson Lakes Campus Adelaide SA 5095 Australia;

    Univ South Australia Sch Engn Mawson Lakes Campus Adelaide SA 5095 Australia;

    Univ South Australia Future Ind Inst Mawson Lakes Campus Adelaide SA 5095 Australia;

    Univ South Australia Future Ind Inst Mawson Lakes Campus Adelaide SA 5095 Australia;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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