Matches in SemOpenAlex for { <https://semopenalex.org/work/W4310358399> ?p ?o ?g. }
- W4310358399 endingPage "109085" @default.
- W4310358399 startingPage "109085" @default.
- W4310358399 abstract "Solar-driven interfacial water evaporation has great application prospects in sewage purification and seawater desalination due to its environment-friendly and energy-efficient. However, the single-mode solar evaporator and fragile thermal management design may greatly hinder its efficient evaporation and practical application. Herein, a novel thermos-inspired double structural evaporator (DCWF) composed of carbon black, nonwoven and extruded polystyrene was developed by a very simple and green method. The DCWF possesses characteristics with low thermal conductivity, continuous and efficient water transportation, and excellent light absorption (∼100%) within the wavelength range from 250 to 2500 nm, which can effectively promote evaporation efficiency. Consequently, the photothermal conversion efficiency of the DCWF was as high as 92.3% and the evaporation rate was up to 1.38 kg·m−2h−1 under one-sun solar illumination. Additionally, the applicable potential of DCWF has been validated by experimental results in the desalination of seawater, sewage purification, and circulation. The findings of this research not only offered a novel double-layer solar evaporation device with excellent photothermal conversion capability and remarkable stability, but also open a new avenue to optimize the solar interfacial evaporation mode." @default.
- W4310358399 created "2022-12-09" @default.
- W4310358399 creator A5001423880 @default.
- W4310358399 creator A5009325779 @default.
- W4310358399 creator A5060508983 @default.
- W4310358399 creator A5065418938 @default.
- W4310358399 creator A5076130661 @default.
- W4310358399 creator A5077399736 @default.
- W4310358399 creator A5080102032 @default.
- W4310358399 date "2023-02-01" @default.
- W4310358399 modified "2023-10-13" @default.
- W4310358399 title "A thermos-inspired double structural design for efficient and sustainable solar-driven water purification" @default.
- W4310358399 cites W2007682129 @default.
- W4310358399 cites W2058532512 @default.
- W4310358399 cites W2080075489 @default.
- W4310358399 cites W2138565108 @default.
- W4310358399 cites W2205259046 @default.
- W4310358399 cites W2516987864 @default.
- W4310358399 cites W2553355974 @default.
- W4310358399 cites W2581348344 @default.
- W4310358399 cites W2584866830 @default.
- W4310358399 cites W2610879647 @default.
- W4310358399 cites W2622037360 @default.
- W4310358399 cites W2626318253 @default.
- W4310358399 cites W2757463737 @default.
- W4310358399 cites W2768567149 @default.
- W4310358399 cites W2775068384 @default.
- W4310358399 cites W2793438632 @default.
- W4310358399 cites W2795069618 @default.
- W4310358399 cites W2806150171 @default.
- W4310358399 cites W2809261792 @default.
- W4310358399 cites W2810801761 @default.
- W4310358399 cites W2892333947 @default.
- W4310358399 cites W2895813889 @default.
- W4310358399 cites W2896084360 @default.
- W4310358399 cites W2896944144 @default.
- W4310358399 cites W2899191461 @default.
- W4310358399 cites W2899292035 @default.
- W4310358399 cites W2905777254 @default.
- W4310358399 cites W2907112518 @default.
- W4310358399 cites W2948018741 @default.
- W4310358399 cites W2948072124 @default.
- W4310358399 cites W2955912841 @default.
- W4310358399 cites W2981534768 @default.
- W4310358399 cites W2984700668 @default.
- W4310358399 cites W2991541519 @default.
- W4310358399 cites W3011962137 @default.
- W4310358399 cites W3023082718 @default.
- W4310358399 cites W3024817962 @default.
- W4310358399 cites W3034182889 @default.
- W4310358399 cites W3037631904 @default.
- W4310358399 cites W3046610007 @default.
- W4310358399 cites W3047539536 @default.
- W4310358399 cites W3088481886 @default.
- W4310358399 cites W3132614842 @default.
- W4310358399 cites W3166606902 @default.
- W4310358399 cites W3178293448 @default.
- W4310358399 cites W3204549454 @default.
- W4310358399 cites W4205669413 @default.
- W4310358399 cites W4210464014 @default.
- W4310358399 cites W4210649526 @default.
- W4310358399 cites W4214821976 @default.
- W4310358399 cites W4221108900 @default.
- W4310358399 cites W4225007527 @default.
- W4310358399 cites W4226142988 @default.
- W4310358399 cites W4244870793 @default.
- W4310358399 cites W4283779581 @default.
- W4310358399 doi "https://doi.org/10.1016/j.jece.2022.109085" @default.
- W4310358399 hasPublicationYear "2023" @default.
- W4310358399 type Work @default.
- W4310358399 citedByCount "1" @default.
- W4310358399 crossrefType "journal-article" @default.
- W4310358399 hasAuthorship W4310358399A5001423880 @default.
- W4310358399 hasAuthorship W4310358399A5009325779 @default.
- W4310358399 hasAuthorship W4310358399A5060508983 @default.
- W4310358399 hasAuthorship W4310358399A5065418938 @default.
- W4310358399 hasAuthorship W4310358399A5076130661 @default.
- W4310358399 hasAuthorship W4310358399A5077399736 @default.
- W4310358399 hasAuthorship W4310358399A5080102032 @default.
- W4310358399 hasConcept C107706546 @default.
- W4310358399 hasConcept C111368507 @default.
- W4310358399 hasConcept C121332964 @default.
- W4310358399 hasConcept C127313418 @default.
- W4310358399 hasConcept C127413603 @default.
- W4310358399 hasConcept C153294291 @default.
- W4310358399 hasConcept C159985019 @default.
- W4310358399 hasConcept C171250308 @default.
- W4310358399 hasConcept C182606246 @default.
- W4310358399 hasConcept C185592680 @default.
- W4310358399 hasConcept C18903297 @default.
- W4310358399 hasConcept C192562407 @default.
- W4310358399 hasConcept C197248824 @default.
- W4310358399 hasConcept C204530211 @default.
- W4310358399 hasConcept C206991015 @default.
- W4310358399 hasConcept C21880701 @default.
- W4310358399 hasConcept C2776058518 @default.
- W4310358399 hasConcept C2776870568 @default.
- W4310358399 hasConcept C2777598616 @default.