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首页> 外文期刊>Solar RRL >Spray-Coated Commercial PTFE Membrane from MoS_2/LaF_3/PDMS Ink as Solar Absorber for Efficient Solar Steam Generation
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Spray-Coated Commercial PTFE Membrane from MoS_2/LaF_3/PDMS Ink as Solar Absorber for Efficient Solar Steam Generation

机译:来自MOS_2 / LAF_3 / PDMS油墨的喷涂商业PTFE膜作为太阳能吸收器,用于高效的太阳能蒸汽发电

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摘要

Due to its promising potential applications in seawater desalination and purification, solar steam conversion has attracted tremendous attention recently. The light-to-heat conversion capacity of solar absorbers directly affects the rate at which freshwater is produced by the evaporation system. Herein, an efficient double-layer evaporator is developed using MoS_2/LaF_3/PDMS ink as an absorber that is printed onto a commercial PTFE membrane by the controlled ink-spray method. The LaF_3 nanoparticles-decorated MoS_2 nanoflowers nanocomposite exhibits enhanced adsorption of sunlight due to semiconductor/solid electrolyte interface synergetic effect-induced broadband absorption ability. Combining the advantages of local heating and rapid vapor emission, the water evaporation rate of the evaporator with spray ink in sunlight is 1.76 kgm~(-2) h~(-1) and the corresponding high light-to-heat conversion efficiency is 91%. Also, the membrane module has good operability, certain mechanical strength, and good long-term stability. The synergistic effect of a rare-earth solid electrolyte and semiconductor provides new ideas for the design and development of materials with high light-to-heat conversion efficiency and good thermal stability.
机译:由于其在海水脱盐和净化中有希望的潜在应用,太阳能蒸汽转换最近引起了巨大的关注。太阳能吸收剂的光热转换容量直接影响蒸发系统淡水产生的速率。这里,使用MOS_2 / LAF_3 / PDMS油墨作为吸收器开发有效的双层蒸发器,其通过受控的喷墨方法印刷到商业PTFE膜上。 LaF_3纳米颗粒装饰的MOS_2纳米割草机纳米复合材料由于半导体/固体电解质接口协同效应诱导的宽带吸收能力而增强了阳光的吸附。结合局部加热和快速蒸气发射的优点,蒸发器在阳光下喷墨的蒸发器的水蒸发速率为1.76kgm〜(-2)H〜(-1),相应的高光热转换效率为91 %。而且,膜组件具有良好的可操作性,某种机械强度,以及良好的长期稳定性。稀土固体电解质和半导体的协同效应为具有高光到热转换效率和良好热稳定性的材料的设计和开发提供了新的思路。

著录项

  • 来源
    《Solar RRL》 |2020年第6期|2000126.1-2000126.8|共8页
  • 作者单位

    Department of Chemical Engineering Northeast Electric Power University No. 169 Changchun Road Jilin City 132012 P. R. China;

    Department of Chemical Engineering Northeast Electric Power University No. 169 Changchun Road Jilin City 132012 P. R. China;

    Department of Chemical Engineering Northeast Electric Power University No. 169 Changchun Road Jilin City 132012 P. R. China;

    The Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University Harbin 10025 P. R. China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ink-spray method; light-to-heat conversion; MoS_2/LaF_3/PDMS; solar absorber; solar-driven vapor generation;

    机译:墨水喷涂方法;光热转换;MOS_2 / LAF_3 / PDMS;太阳能吸收剂;太阳能驱动的蒸气生成;

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