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Enhanced Steam Temperature Enabled by a Simple Three‐Tier Solar Evaporation Device

机译:通过简单的三层太阳蒸发装置实现了增强的蒸汽温度

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Interfacial water evaporation technology by using solar energy provides one of the promising pathways for freshwater shortage management. However, current research mainly focuses on the improvement of evaporation efficiency by macro or microregulations, ignoring the steam temperature, which is a manifestation of the quality of water. Herein not only is a high‐rate solar evaporation achieved but also steam temperature is enhanced by a simple three‐tier (wet absorber–air gap–dry absorber) device. In a routine interfacial evaporation test, the evaporator achieves a stable evaporation rate up to 2.15?kg?m~(?2)?h~(?1)under one sun, demonstrating a competitive evaporation rate compared with other reports. With the three‐tier device, the steam temperature can increase 33.7%, 41.13%, and 47% without dry absorber under one sun, two sun, and three sun illumination, respectively. At the same time, the steam temperature can be as high as 95.5?°C under three sun intensities. This work provides the possibility of using a simple three‐tier device for high‐temperature steam generation without extra energy input, which contributes to an idea for future research on the production high‐quality water. MoS_(2)@Cu_(9)S_(5)is developed as a photothermal material for solar evaporation. The evaporation rate can reach up to 2.15 kg m~(?2)?h~(?1)and the water produced can reach up to 16.5 kg m~(?2). Further, a simple three‐tier device is designed for enhanced steam temperature. The steam temperature can increase 33.7%, 41.13%, and 47% under one sun, two sun, and three sun illumination, respectively.
机译:使用太阳能界面水蒸发技术提供了淡水短缺管理的有希望的途径之一。然而,目前的研究主要侧重于通过宏观或微观调节改善蒸发效率,忽略蒸汽温度,这是水质量的表现。这里不仅是实现的高速太阳蒸发,而且通过简单的三层(湿吸收剂 - 气隙干燥器)装置增强了蒸汽温度。在常规界面蒸发试验中,蒸发器达到稳定的蒸发速率,高达2.15Ω·kg?m〜(?2)?H〜(?1)与其他报告相比,展示了竞争蒸发速率。通过三层设备,蒸汽温度可增加33.7%,41.13%和47%,没有干燥吸收器,在一个太阳,两个太阳和三个太阳照明下。同时,在三个太阳强度下,蒸汽温度可以高达95.5?°C。这项工作提供了在没有额外的能量输入的情况下使用简单的三层设备进行高温蒸汽发电的可能性,这有助于对未来的生产高质量水进行研究。 MOS_(2)@cu_(9)S_(5)是作为太阳蒸发的光热材料开发的。蒸发速率可达2.15千克M〜(?2)?H〜(α1),产生的水可以达到16.5 kg m〜(?2)。此外,设计了一个简单的三层设备,用于增强蒸汽温度。蒸汽温度分别可以分别增加33.7%,41.13%和47%,在一个太阳,两个太阳和三个太阳照明下。

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