We present a new type of sorbent material involving an aluminum heat exchanger coated with a hydrophilic alginate biopolymer hydrogel for atmospheric water harvesting (AWH). The hydrogel-coated heat exchanger is tested in a prototype driving cycle, collecting water over several days of continuous operation. The thermal cycle performance of the coating is tested in dry climates with relative humidity in the range of 30-50%. The new sorbent demonstrates regeneration temperatures between 60 and 0(degrees)C, allowing efficient thermal cycles. The system allowed for a water yield of 2.48-3.3 L/kg(Hydrogel)/day. The compactness of the coated heat exchanger, together with the performed daily water productivity, makes it compatible with applications integrating AWH technologies in the building sector.

Alginate Biopolymeric Coated Heat Exchanger for Atmospheric Water Harvesting / Gentile, Vincenzo; Bozlar, Michael; Calò, Matteo; Simonetti, Marco; Meggers, Forrest. - In: ACS ES&T WATER. - ISSN 2690-0637. - ELETTRONICO. - 4:4(2024), pp. 1874-1882. [10.1021/acsestwater.3c00847]

Alginate Biopolymeric Coated Heat Exchanger for Atmospheric Water Harvesting

Gentile, Vincenzo;Bozlar, Michael;Simonetti, Marco;Meggers, Forrest
2024

Abstract

We present a new type of sorbent material involving an aluminum heat exchanger coated with a hydrophilic alginate biopolymer hydrogel for atmospheric water harvesting (AWH). The hydrogel-coated heat exchanger is tested in a prototype driving cycle, collecting water over several days of continuous operation. The thermal cycle performance of the coating is tested in dry climates with relative humidity in the range of 30-50%. The new sorbent demonstrates regeneration temperatures between 60 and 0(degrees)C, allowing efficient thermal cycles. The system allowed for a water yield of 2.48-3.3 L/kg(Hydrogel)/day. The compactness of the coated heat exchanger, together with the performed daily water productivity, makes it compatible with applications integrating AWH technologies in the building sector.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2989355