The impact of using nanofluid on the performance of solar stills: A comprehensive review
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Elsevier BV
Reference224 articles.
1. Performance evaluation of a modified design of a single slope solar still;Abdallah;Desalination,2008
2. Experimental study of activated carbon as a porous absorber in solar desalination with environmental, exergy, and economic analysis;Abdelaziz;Process Saf. Environ. Prot.,2021
3. Performance enhancement of tubular solar still using nano-enhanced energy storage material integrated with v-corrugated aluminum basin, wick, and nanofluid;Abdelaziz;J. Energy Storage,2021
4. Performance improvement of modified tubular solar still by employing vertical and inclined pin fins and external condenser: an experimental study;Abdelgaied;Environ. Sci. Pollut. Res.,2020
5. Improving the thermo-economic performance of hemispherical solar distiller using copper oxide nanofluids and phase change materials: Experimental and theoretical investigation;Abdelgaied;Sol. Energy Mater. Sol. Cells,2022
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