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March 3, 2026Case Studies in Thermal Engineering3 citationsOpen Access

Enhanced Conventional Solar Still Performance with Water Unit, Vertical Wick System, and PCM-Ag Nano Integration

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HAHisham M. AlmongyIEI.I. ElbatalAKA.E. Kabeel

Key Points

  • To improve the performance of solar stills through integrated modifications, enhancing water production efficiency.
  • Developed an integrated solar still system combining a water unit, vertical wick, and PCM with silver nanoparticles.
  • Tested the modified system against conventional solar stills for productivity and cost efficiency analysis.
  • Evaluated the cumulative daily productivity and cost of distilled water between both systems.
  • The integrated system achieved a cumulative daily productivity of 13,250 mL/m², a 327% increase compared to 3,100 mL/m² from conventional systems.
  • Reduced distilled water cost from $0.024/L to $0.013/L, highlighting economic viability of the modifications.

Abstract

Solar distillation represents a sustainable solution for freshwater production in water-scarce regions. However, conventional solar stills (CSS) face significant limitations including low productivity rates, substantial heat losses through rear walls, and inefficient utilization of solar radiation. The study integrates three modifications: (1) a water unit (WU) for heat loss reduction, (2) a vertical wick solar still (VWSS) for hot water feeding, and (3) PCM enhanced with silver nanoparticles for thermal storage. The integrated system CSS+WU+VWSS+PCM-Ag was tested against conventional CSS. Results demonstrated that the fully integrated system (CWCSS+WU+VWSS with PCM-Ag) achieved cumulative daily productivity of 13, 250 mL/m 2, representing a 327% improvement over conventional solar stills producing 3, 100 mL/m 2. The modified system also reduced the cost of distilled water from 0. 024 /L to 0. 013 /L. These findings confirm that integrated modifications combining heat loss reduction, hot water feeding, and thermal storage substantially enhance solar still performance while maintaining economic viability. The study recommends further optimization of nano-enhanced PCM configurations and extended testing under varying climatic conditions.

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Cite This Study

Almongy et al. (2026) studied this question.

synapsesocial.com/papers/69a67eb2f353c071a6f0a07dhttps://doi.org/10.1016/j.csite.2026.107877
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