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Contactless steam generation and superheating under one sun illumination

机译:一次阳光照射下非接触蒸汽的产生和过热

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摘要

Steam generation using solar energy provides the basis for many sustainable desalination, sanitization, and process heating technologies. Recently, interest has arisen for low-cost floating structures that absorb solar radiation and transfer energy to water via thermal conduction, driving evaporation. However, contact between water and the structure leads to fouling and pins the vapour temperature near the boiling point. Here we demonstrate solar-driven evaporation using a structure not in contact with water. The structure absorbs solar radiation and re-radiates infrared photons, which are directly absorbed by the water within a sub-100 μm penetration depth. Due to the physical separation from the water, fouling is entirely avoided. Due to the thermal separation, the structure is no longer pinned at the boiling point, and is used to superheat the generated steam. We generate steam with temperatures up to 133 °C, demonstrating superheated steam in a non-pressurized system under one sun illumination.
机译:利用太阳能产生蒸汽为许多可持续的淡化,消毒和工艺加热技术提供了基础。最近,人们开始关注低成本的浮动结构,该结构可吸收太阳辐射并通过热传导将能量转移到水中,从而驱动蒸发。但是,水与建筑物之间的接触会导致结垢,并使蒸气温度接近沸点。在这里,我们演示了使用不与水接触的结构进行太阳能驱动的蒸发。该结构吸收太阳辐射并再辐射红外光子,红外光子会在小于100μm的穿透深度内被水直接吸收。由于与水的物理隔离,完全避免了结垢。由于热分离,该结构不再固定在沸点上,而是用于过热产生的蒸汽。我们产生的蒸汽温度高达133 C,在一个阳光照射下的非加压系统中演示了过热蒸汽。

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