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Robust and Low-Cost Flame-Treated Wood for High-Performance Solar Steam Generation

ACS Applied Materials & Interfaces · 2017 · Vol. 9(17) · pp. 15052–15057
Guobin XueKang LiuQian ChenPeihua YangJia LiTianpeng DingJiangjiang DuanBei QiJun Zhou

Abstract

Solar-enabled steam generation has attracted increasing interest in recent years because of its potential applications in power generation, desalination, and wastewater treatment, among others. Recent studies have reported many strategies for promoting the efficiency of steam generation by employing absorbers based on carbon materials or plasmonic metal nanoparticles with well-defined pores. In this work, we report that natural wood can be utilized as an ideal solar absorber after a simple flame treatment. With ultrahigh solar absorbance (∼99%), low thermal conductivity (0.33 W m<sup>-1</sup> K<sup>-1</sup>), and good hydrophilicity, the flame-treated wood can localize the solar heating at the evaporation surface and enable a solar-thermal efficiency of ∼72% under a solar intensity of 1 kW m<sup>-2</sup>, and it thus represents a renewable, scalable, low-cost, and robust material for solar steam applications.

Solar-Powered Water Purification MethodsSolar Thermal and Photovoltaic SystemsNanofluid Flow and Heat TransferMaterials scienceSolar stillRenewable energyThermalDesalinationThermal efficiencySolar energySolar powerElectricity generationProcess engineering

Funding

  • National Natural Science Foundation of China
  • Ministry of Education of the People's Republic of China
  • China Postdoctoral Science Foundation
Citations
558
FWCI
18.85
field-weighted impact
References
39
Percentile
100%
vs. same field & year
Citations per year
References
Solar steam generation by heat localization
Nature Communications · 2014 · 2,191 citations
Studying disorder in graphite-based systems by Raman spectroscopy
Physical Chemistry Chemical Physics · 2007 · 4,505 citations
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