Author: Karen, Wong Min Jin; Wong, C Y; Wang, Zhipeng; Liew, Willey Y H; Melvin, G J H
Title: Carbonized rice husk coated solar absorber for clean water generation from seawater with a solar still. Cord-id: voasxuj7 Document date: 2021_8_18
ID: voasxuj7
Snippet: This study demonstrated the generation of clean water from seawater collected at the beach coast in Universiti Malaysia Sabah, Malaysia, with carbonized rice husk coated melamine sponge as solar absorber by a solar still. Melamine sponge was utilized as seawater transportation medium since its porous structure is excellent in channeling the seawater. Whereas carbonized rice husk was used as the photothermal conversion material for its efficient heat absorption due to its black color and porous s
Document: This study demonstrated the generation of clean water from seawater collected at the beach coast in Universiti Malaysia Sabah, Malaysia, with carbonized rice husk coated melamine sponge as solar absorber by a solar still. Melamine sponge was utilized as seawater transportation medium since its porous structure is excellent in channeling the seawater. Whereas carbonized rice husk was used as the photothermal conversion material for its efficient heat absorption due to its black color and porous structure. Implementing air gap between the seawater body and solar absorber, and restricted water pathway assisted in localizing heat on the top surface of solar absorber. Clean water was generated under direct solar radiation during the day at an open space with average solar intensity around 1.1 ∼ 1.2 kW/m2 (slightly higher than 1 sun) for about four hours. Efficiency of the solar absorber was calculated, while the quality of the generated clean water was observed in terms of salinity and pH value. Insulated solar still with carbon-coated sponge showed the highest efficiency at about 54.74%. Salinity of the collected clean water significantly reduced to consumable level which was approximately 55 ppm, and the pH value at about 6.63 where it was within the safe limit of the drinkable water pH.
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