Thermal–exergetic analysis of hemispherical solar still enhanced with activated carbon nanoparticles synthesized from spent tea dust
摘要
The growing problem of water scarcity worldwide necessitates the continuous development of various technologies to provide effective solutions. Among the various solutions for the desalination process, the solar still is the most prominent due to its cost-effectiveness and sustainable approach. The current experimental study proposes a new technique aimed at improving the functioning of hemispherical solar stills (HSS) by applying the carbonized nanoparticles (ACNPs) made from spent tea dust on the absorber plate. This method enhances the thermal conductivity and absorptivity of the surface. Incorporating ACNPs into the black paint results in increased thermal energy absorption, which raises the temperature of the absorber and water, thus increasing the yield of freshwater. To our knowledge, this is one of the first studies to incorporate waste-derived activated carbon nanoparticle coatings, examining their effects on the thermal and operational efficiency of HSS in realistic outdoor environments. This offers an inexpensive and easily adaptable upgrade to solar desalination systems. The research involved the fabrication of two identical solar stills: one featuring a conventional black surface coating, termed HSS, and the other incorporating activated carbon nanoparticles dispersed in black paint and applied on the absorber. The experimental results revealed that the thermal performance has significantly improved. The modified HSS recorded a peak absorber and water temperature of 74 and 72