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Low-cost carbonized kelp for highly efficient solar steam generation

机译:低成本碳化海带,可高效产生太阳能蒸汽

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摘要

Using abundant solar energy to generate steam offers unique solution overcoming the lack of freshwater resources. Despite extensive explorations, low-cost devices with high efficiency are still critically wanting. In this work, the extremely cheap carbonized kelp with good stability, high solar absorption (~93%), porous microstructure, and hydrophilic surface is found to be efficient for solar steam generation (SSG) and seawater desalination for the first time. A SSG device meeting the requirements of the “most stable triangle” is thus designed. The carbonized kelp is utilized as the solar absorber, with thermal insulation by an expanded polystyrene foam and water supply by a fiber cotton wick via the capillary force. A high solar to steam conversion efficiency of 84.8% and evaporation rate of 1.351 kg·msup-2/sup·hsup-1/sup are attained under 1 sun irradiation. This work develops a promising and bioinspired device with long-term stability for SSG that can be produced economically (~3.8 $/msup2/sup).
机译:利用丰富的太阳能产生蒸汽提供了独特的解决方案,可以克服淡水资源的缺乏。尽管进行了广泛的探索,但仍然迫切需要低成本,高效率的设备。在这项工作中,首次发现非常便宜的碳化海带,具有良好的稳定性,高的太阳吸收率(〜93%),多孔的微结构和亲水性表面,首次可用于太阳能蒸汽(SSG)和海水淡化。因此,设计了一种满足“最稳定三角形”要求的SSG设备。碳化的海带被用作太阳能吸收器,通过膨胀的聚苯乙烯泡沫塑料进行隔热,并通过毛细作用力通过纤维棉芯进行供水。 1次日光照射下,太阳能转化率达到84.8%,蒸发速率达到1.351 kg·m -2 ·h -1 。这项工作开发了一种有前途的,具有生物启发性的,对SSG具有长期稳定性的装置,可以经济地生产(〜3.8 $ / m 2 )。

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