Department of Civil and Environmental Engineering, University of California, Berkeley, California 94720, United States.
Energy Storage and Distributed Resources Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.
Environ Sci Technol. 2021 Nov 16;55(22):15435-15445. doi: 10.1021/acs.est.1c04010. Epub 2021 Nov 5.
In this work, we demonstrate a 3-dimensional graphene oxide (3D GO) stalk that operates near the capillary wicking limit to achieve an evaporation flux of 34.7 kg m h under 1 sun conditions (1 kW/m). This flux represents nearly a 100 times enhancement over a conventional solar evaporation pond. Interfacial solar evaporation traditionally uses 2D evaporators to vaporize water using sunlight, but their low evaporative water flux limits their practical applicability for desalination. Some recent studies using 3D evaporators demonstrate potential for more efficient water transfer, but the flux improvement has been marginal because of a low evaporation area index (EAI), which is defined as the ratio of the total evaporative surface area to the projected ground area. By using a 3D GO stalk with an ultrahigh EAI of 70, we achieved nearly a 20-fold enhancement over a 2D GO evaporator. The 3D GO stalk also exhibited additional advantages including omnidirectional sunlight utilization, a high evaporation flux under dark conditions from more efficient utilization of ambient heating, a dramatic increase of the evaporation rate by introducing wind, and scaling resistance in evaporating brines with a salt content of up to 17.5 wt %. This performance makes the 3D GO stalk well suited for the development of a low-cost, reduced footprint technology for zero liquid discharge in brine management applications.
在这项工作中,我们展示了一种 3 维氧化石墨烯(3D GO)棒,它在接近毛细吸液极限的条件下工作,在 1 个太阳条件(1kW/m)下实现 34.7kg m h 的蒸发通量。与传统的太阳能蒸发池相比,这一通量提高了近 100 倍。界面太阳能蒸发传统上使用 2D 蒸发器利用太阳光蒸发水,但由于蒸发面积指数(EAI)低,其蒸发水通量有限,限制了其在脱盐方面的实际应用。一些最近使用 3D 蒸发器的研究表明,它们具有更高效的水传递潜力,但由于蒸发面积指数(EAI)低,通量的提高是微不足道的,EAI 定义为总蒸发表面积与投影地面面积的比值。通过使用具有超高 EAI(70)的 3D GO 棒,我们实现了比 2D GO 蒸发器提高近 20 倍的效果。3D GO 棒还具有其他优点,包括全方位利用阳光、在黑暗条件下利用环境加热更有效地提高蒸发通量、通过引入风显著提高蒸发速率,以及在蒸发盐度高达 17.5wt%的盐水时具有抗结垢性能。这种性能使 3D GO 棒非常适合开发低成本、占地面积小的技术,用于盐水管理应用中的零液体排放。