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基于的珊瑚结构的太阳能吸收涂层,在高温下提高了可扩展性和耐用性.

Yifan Guo1, Kaoru Tsuda2, Milad Mohsenzadeh1

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概括

一种新的结珊瑚结构涂层增强了太阳能热能捕获. 这种可扩展的涂层抵御了分层和降解,改善了聚焦太阳能热系统的太阳能吸收器耐用性.

关键词:
集中的太阳能发电.层次结构结构是一个层次结构.材料的降解降解材料的降解采集太阳能 采集太阳能太阳能材料 太阳能材料

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科学领域:

  • 材料科学 材料科学 材料科学
  • 可再生能源技术可再生能源技术

背景情况:

  • 层次的珊瑚结构涂层为集中太阳能热 (CST) 系统提供高太阳吸收率.
  • 界面分层和可扩展性问题阻碍了工业采用当前的CST涂层.

研究的目的:

  • 为CST系统开发一种强大且可扩展的珊瑚结构涂层.
  • 为应对CST涂层的界面分层和材料复杂性挑战.

主要方法:

  • 制造了一种新的珊瑚结构涂层,使用来粘合黑色素.
  • 无人机沉积技术易于大规模应用.
  • 在高温 (高达600°C) 下进行长期老化试验,持续3000小时.

主要成果:

  • 结合涂层有效地减轻了接口分层.
  • 无人机沉积确保了大型太阳能接收器的可扩展性.
  • 涂层在长时间的高温老化后保持稳定的太阳吸收率,抑制了阴离子扩散.

结论:

  • 开发的结珊瑚结构涂层为CST应用提供了可扩展和耐用的解决方案.
  • 这一进步有助于在太阳能采集中改进光捕捉和维护策略.
  • 涂层的稳定性和易于沉积为更广泛的工业应用CST技术铺平了道路.