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3D-Structured Carbonized Sunflower Heads for Improved Energy Efficiency in Solar Steam Generation

机译:3D结构碳化向日葵头,用于改善太阳能蒸汽发电的能效

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Solar steam generation is regarded as a perspective technology, due to its potentials in solar light absorption and photothermal conversion for seawater desalination and water purification. Although lots of steam generation systems have been reported to possess high conversion efficiencies recently, researches of simple, cost-effective, and sustainable materials still need to be done. Here, inspired by natural young sunflower heads' property increasing the temperature of dish-shaped flowers by tracking the sun, we used 3D-structured carbonized sunflower heads as an effective solar steam generator. The evaporation rate and efficiency of these materials under 1 sun (1 kW m(-2)) are 1.51 kg m(-2) h(-1) and 100.4%, respectively, beyond the theoretical limit of 2D materials. This high solar efficiency surpasses all other biomass-based materials ever reported. It is demonstrated that such a high capability is mainly attributed to the 3D-structured top surface, which could reabsorb the lost energy of diffuse reflection and thermal radiation, as well as provide enlarged water/air interface for steam escape. 3D-structured carbonized sunflower heads provide a new method for the future design and fabrication of high-performance photothermal devices.
机译:由于其对海水脱盐和水净化的太阳光吸收和光热转化潜力,太阳能蒸汽发电被视为一种透视技术。虽然据报道,许多蒸汽发电系统最近仍有高转化效率,但仍需要进行简单,成本效益和可持续材料的研究。在这里,通过追踪阳光来增加天然年轻的向日葵头的性质,通过跟踪阳光来增加盘形花的温度,我们使用3D结构碳化向日葵头作为有效的太阳能蒸汽发生器。在1℃下的这些材料(1kW m(-2))下的蒸发速率和效率分别为1.51kg m(-2)h(-1)和100.4%,超出2d材料的理论极限。这种高太阳能效率超过了有史以来报告的所有其他生物质的材料。证明这种高能力主要归因于3D结构的顶表面,这可以重新吸收漫反射和热辐射的损失,以及提供用于蒸汽逸出的扩大的水/空气界面。 3D结构碳化向日葵头为未来的设计和制造高性能光热器件提供了一种新方法。

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