Publication | Open Access
Updates on Evaporation and Condensation Methods for the Performance Improvement of Solar Stills
20
Citations
133
References
2021
Year
EngineeringEnergy EfficiencyEnergy ConversionPhotovoltaicsWastewater TreatmentRefrigerationEvaporation RateChemical EngineeringCondensation MethodsRenewable Energy SystemsPerformance ImprovementSolar Thermal EnergySolar Energy UtilisationSolar PowerCondensation RateSolar CoolingEnvironmental EngineeringDewvaporationSolar StillsEnergy Conversion MaterialsSolar Cell Materials
Solar still, a small equipment using evaporation and condensation processes to get clean water, is expected to be widely used for sea/brackish water desalination, water purification, and wastewater treatment because of its convenient carrying, friendly environment, and low energy consumption. In recent years, considerable progress has been made in improving the productivity of solar still. This paper will reclassify the methods to improve the solar still by elevating the evaporation rate and condensation rate. The main methods increasing evaporation rate are as follows: (i) adding heat storage materials; (ii) using nanoparticles; (iii) changing structure of the absorption plate; and (iv) using photothermal materials. The primary methods increasing the condensation rate are as follows: (i) cooling the condensing surface; (ii) increasing the condensation area; (iii) changing the wettability of the condensing surface; and (iv) using a separate condenser. The advantages and disadvantages of each method are compared. Furthermore, this paper includes an economic analysis of current solar stills and a forecast of future developments. The freshwater cost of solar still is in the range of about USD 0.0061–0.277/L, which provides reference and direction for future researching solar stills on their low cost and high productivity.
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