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Three-Dimensional Porous Solar-Driven InterfacialEvaporator for High-Efficiency Steam Generation under Low Solar Flux

机译:三维多孔太阳能驱动界面低太阳通量下高效蒸汽产生的蒸发器

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摘要

Solar steam generation is critical for many important solar-thermal applications, but is challenging to achieve under low solar flux due to the large evaporation enthalpy of water. Here, we demonstrate a three-dimensional porous solar-driven interfacial evaporator that can generate 100 °C steam under 1 sun illumination with a record high solar-to-steam conversion efficiency of 48%. The high steam generation efficiency is achieved by localizing solar-thermal heating at the evaporation surface and controlling the water supply onto the porous evaporator through tuning its surface wettability, which prevents overheating of the evaporator and thus minimizes conductive, convective, and radiative heat losses from the evaporator. The design of steam outlet located at the sidewall of the evaporator rather than from the solar absorber surface not only facilitates the collection of generated steam, but also avoids potential blockage of solar radiation by the condensing steam. The high-efficiency solar-driven evaporator has been used to generate hot steam for outdoor removal of paraffinon the wall of oil pipelines, offering a promising solution to mitigatethe wax deposition issue in petroleum extraction processes.
机译:太阳能蒸汽的产生对于许多重要的太阳能应用至关重要,但由于水的蒸发焓高,因此在低太阳光通量下很难实现。在这里,我们演示了三维多孔太阳能驱动的界面蒸发器,该蒸发器可以在1种阳光照射下产生100°C的蒸汽,具有创纪录的48%的太阳能转化效率。通过将太阳热加热集中在蒸发表面并通过调节多孔蒸发器的表面润湿性来控制向多孔蒸发器的供水来实现高蒸汽产生效率,这可防止蒸发器过热,从而最大程度地减少了蒸发器产生的传导,对流和辐射热损失蒸发器。位于蒸发器侧壁而不是从太阳能吸收器表面的蒸汽出口的设计不仅便于收集所产生的蒸汽,而且还避免了冷凝蒸汽对太阳辐射的潜在阻塞。高效的太阳能驱动蒸发器已用于产生热蒸汽,用于室外去除石蜡在石油管道的墙上,提供了一种有希望的解决方案石油开采过程中的蜡沉积问题。

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