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Efficient Solar-driven Steam Generation Enabled by An Ultra-black Paint

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arxiv 2005.14280 v3 pith:V4OAWQSO submitted 2020-05-28 physics.app-ph cond-mat.mtrl-sci

classification physics.app-phcond-mat.mtrl-sci
keywords solargenerationsteamevaporationsolar-drivenultra-blackwaterabsorptance
verification ladder T0 review T1 audit T2 compute T3 formal
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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.

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    By exploiting higher-order spatial harmonics of a periodic line array, a single stationary measurement yields discrete surface acoustic wave dispersion points from which layer and substrate properties are fitted.

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