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Št. zadetkov: 4
Izvirni znanstveni članek
Oznake: higroskopski porozni polimeri;sorpcijsko pridobivanje vode iz atmosphere;kinetika sorpcijskih materialov;sorpcijski mehanizmi;strukturna optimizacija;hygroscopic porous polymer;sorption-based atmospheric water harvesting;sorption kinetics;sorption mechanism;structural optimization;
Sorption-based atmospheric water harvesting (SAWH) holds huge potential due to its freshwater capabilities for alleviating water scarcity stress. The two essential parts, sorbent material and system structure, dominate the water sorption–desorption performance and the total water productivity for SA ...
Leto: 2022 Vir: Fakulteta za strojništvo (UL FS)
Izvirni znanstveni članek
Oznake: hidrogeli;sorpcijska sredstva;shranjevanje energije;atmosfersko pridobivanje vode;energetska učinkovitost;obnovljivi viri energije;hydrogels;sorption materials;energy storage;atmospheric water harvesting;energy efficiency;renewable energy sources;
Leto: 2023 Vir: Fakulteta za strojništvo (UL FS)
Izvirni znanstveni članek
Oznake: pridobivanje vode iz atmosfere;nanokompozitna sorpcijska sredstva;porozne strukture;napredno toplotno inženirstvo;terenski preizkusi;atmospheric water harvesting;nanocomposite sorbents;porous stuctures;advanced thermal engineering;field tests;
Sorption-based atmospheric water harvesting has the potential to realize water production anytime, anywhere, but reaching a hundred-gram high water yield in semi-arid climates is still challenging, although state-of-the-art sorbents have been used. Here, we report a portable and modularized water ha ...
Leto: 2022 Vir: Fakulteta za strojništvo (UL FS)
Izvirni znanstveni članek
Oznake: materiali za sevalno hlajenje z nebom;sevalna izmenjava;hlajenje;spektralno selektivni materiali;prenos toplote;koncentracija hladilne energije;atmosfersko pridobivanje vode;napredni toplotni inženiring;obnovljivi viri energije;materials for radiative sky cooling;radiative heat exchange;cooling;spectrally selective materials;heat transfer;cooling energy concentration;atmospheric water harvesting;advanced thermal engineering;renewable energy sources;
The world's first demonstration of passive radiative cooling under the sun in 2014 attracted substantial attention due to its ubiquitous and passive nature. Numerous nanophotonic and metamaterials capable of radiative sky cooling have been reported over the past decade. However, the cooling power de ...
Leto: 2024 Vir: Fakulteta za strojništvo (UL FS)
Št. zadetkov: 4
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