arXiv · 2005.14280
Efficient Solar-driven Steam Generation Enabled by An Ultra-black Paint
Abstract
Solar-driven interfacial steam generation for desalination has attracted broad attention. However, a significant challenge still remains for achieving a higher evaporation rate and high water quality, together with a cost-effective and easy-to-manufacture device to provide a feasible solar-driven steam generation system. In this study, a novel ultra-black paint, Black 3.0, serving as a perfect solar absorber is introduced into the hot-pressed melamine foam networks, allowing us to construct an ultra-black (99% absorptance in the solar region) and self-floating evaporation device. The high performing features of effective solar absorptance and salt-rejection capability contribute to a high-to-date evaporation rate of freshwater at 2.48 kg m-2 h-1 under one sun (1 kW m-2). This interfacial solar evaporator has a daily drinkable water yield of 2.8 kg m-2 even in cloudy winter weather and maintains stability in water with a wide range of acidity and alkalinity (pH 1~14). These features will enable the construction of a facilely fabricated, robust, highly-efficient, and cost-effective solar steam generation system for freshwater production.
Explore related subjects
Keep this discovery
Xiaojie Liu, Yanpei Tian, Fangqi Chen, Ralph Ahlgren, Yiting Zheng, Ming Su, Gang Xiao, Yi Zheng. 2020-05-28. Efficient Solar-driven Steam Generation Enabled by An Ultra-black Paint. https://arxiv.org/abs/2005.14280
Cite the original work for its findings. Save a collection to share your selection of sources.