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Nanofluids-based and porous media-based solar evaporation: A comparative study

  • University of Leeds
  • University of Kufa

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Water vaporization through direct volumetric solar collectors has recently attracted a significant attention of the scientific research community. Many studies suggested plasmonic nanoparticles, such as gold nanoparticles, to produce solar clean water effectively. However, there is a lack of studies comparing the feasibility of using gold nanoparticles for solar applications with other cheap materials at the same operating conditions. In this study, well-controlled experiments were performed to clarify the mechanism of the solar evaporation process using gold nanofluids and micro-sized porous medium. The results show that gold nanofluids are not feasible for solar evaporation applications especially solar still technologies. This infeasibility is mainly due to the high cost and the low absorbance of gold nanofluids comparing to the porous medium. High nanofluid concentration is needed to trap the solar energy in a thin layer at the liquid-gaseous interface. Using carbon-based, micro-sized thin porous medium produces solar water vapour at higher rates than that produced by gold nanofluids. Also, increasing the solar intensity enhances the evaporation rates, but unavoidably reduces the efficiency due to the increase in the heat losses related to the accompanied high temperatures.

源语言英语
主期刊名Technologies and Materials for Renewable Energy, Environment and Sustainability, TMREES 2019
编辑Chafic-Touma Salame, Auday Hattem Shaban, Panagiotis Papageorgas, Michel Aillerie
出版商American Institute of Physics Inc.
ISBN(电子版)9780735418639
DOI
出版状态已出版 - 17 7月 2019
活动International Conference on Technologies and Materials for Renewable Energy, Environment and Sustainability 2019, TMREES 2019 - Beirut, 黎巴嫩
期限: 10 4月 201912 4月 2019

出版系列

姓名AIP Conference Proceedings
2123
ISSN(印刷版)0094-243X
ISSN(电子版)1551-7616

会议

会议International Conference on Technologies and Materials for Renewable Energy, Environment and Sustainability 2019, TMREES 2019
国家/地区黎巴嫩
Beirut
时期10/04/1912/04/19

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