Shanghai Key Laboratory of Special Artificial Microstructure Materials and Technology, School of Physics Science and Engineering , Tongji University , Shanghai 200092 , People's Republic of China.
ACS Appl Mater Interfaces. 2019 Nov 13;11(45):42057-42065. doi: 10.1021/acsami.9b12918. Epub 2019 Oct 31.
Ecofriendly, highly effective, and low-cost solar steam generation has great potential in the applications of power generation, seawater desalination, and industry wastewater treatment. Solar steam generation requires an evaporator that has strong light absorption over a wide-frequency band (200-3000 nm), high photothermal conversion efficiency, and good thermal insulation to avoid excessive heat loss. Herein, foam-strengthened ultrablack carbon aerogels (CAs) with micropores, mesopores, and macropores were prepared using freeze drying. The small-size conductor effect in ultrablack CAs could increase the surface electron concentration, leading to the increase of light absorption and ultimately enhancing photothermal conversion efficiency. Consequently, under 1 sun illumination, dried CA-5 exhibited a fast temperature rise rate and the highest thermal equilibrium temperature of 87.6 °C among CAs, the equilibrium temperature is 20.8 °C higher than that of the foam. Besides, CA-5 exhibited a high water evaporation rate of 1.29 kg m h under only 1 sun illumination. To further increase the hot-electron effect, CO activation was implemented. The highest water evaporation rate among activated CAs (ACAs) was 1.37 kg m h, which is about 2.85 times higher than that of pure water. The highest water evaporation efficiency was 87.51%, which is better than most of the previously reported evaporation efficiencies. Besides the hot-electron enhancement effect, ACAs with thermal insulation, mechanical strength, and thermal stability show great potential for producing fresh water from seawater, industrial wastewater, and even concentrated acidic or alkaline solutions.
环保、高效且低成本的太阳能蒸汽产生在发电、海水淡化和工业废水处理等应用中具有巨大的潜力。太阳能蒸汽产生需要一个蒸发器,该蒸发器在宽频带(200-3000nm)下具有强的光吸收、高的光热转换效率和良好的隔热性能,以避免过度的热损失。在此,使用冷冻干燥法制备了具有微孔、中孔和大孔的泡沫增强型超黑碳气凝胶(CA)。超黑 CA 中的小尺寸导体效应可以增加表面电子浓度,从而增加光吸收,最终提高光热转换效率。因此,在 1 个太阳光照下,干燥的 CA-5 表现出最快的升温速率和 CA 中最高的热平衡温度 87.6°C,平衡温度比泡沫高 20.8°C。此外,CA-5 在仅 1 个太阳光照下表现出 1.29kg m h 的高蒸发速率。为了进一步提高热电子效应,实施了 CO 活化。活化 CA(ACAs)中最高的水蒸发速率为 1.37kg m h,约是纯水的 2.85 倍。最高的水蒸发效率为 87.51%,优于大多数先前报道的蒸发效率。除了热电子增强效应外,具有隔热、机械强度和热稳定性的 ACAs 在从海水、工业废水甚至浓缩的酸性或碱性溶液中生产淡水方面具有巨大的潜力。