ACS Appl Mater Interfaces. 2018 Mar 21;10(11):9362-9368. doi: 10.1021/acsami.7b18071. Epub 2018 Mar 6.
Sun-driven steam generation is now possible and has the potential to help meet future energy needs. Current technologies often use solar condensers to increase solar irradiance. More recently, a technology for solar steam generation that uses heated surface water and low optical concentration is reported. In this work, a commercially available activated carbon fiber felt is used to generate steam efficiently under one sun illumination. The evaporation rate and solar conversion efficiency reach 1.22 kg m h and 79.4%, respectively. The local temperature of the evaporator with a floating activated carbon fiber felt reaches 48 °C. Apart from the high absorptivity (about 94%) of the material, the evaporation performance is enhanced thanks to the well-developed pores for improved water supply and steam escape and the low thermal conductivity, which enables reduced bulk water temperature increase. This study helps to find a promising material for solar steam generation using a water evaporator that can be produced economically (∼6 $/m) with long-term stability.
光驱动蒸汽发生现在成为可能,并有可能帮助满足未来的能源需求。目前的技术通常使用太阳能聚光器来增加太阳辐照度。最近,报道了一种使用加热表面水和低光学浓度的太阳能蒸汽发生技术。在这项工作中,使用市售的活性碳纤维毡在单阳光照射下高效地产生蒸汽。蒸发率和太阳能转换效率分别达到 1.22 千克每小时和 79.4%。带有浮动活性碳纤维毡的蒸发器的局部温度达到 48°C。除了材料的高吸收率(约 94%)外,由于发达的孔结构有利于提高供水和蒸汽逸出性能,以及低导热性有利于降低体相水温升高,因此蒸发性能得到了增强。这项研究有助于找到一种有前途的太阳能蒸汽发生材料,其水蒸发器可以经济地(约 6 美元/平方米)生产,并具有长期稳定性。