A novel water electrolysis hydrogen production system powered by a renewable hydrovoltaic power generator

  • Lee, Seung-Hwan
  • Kwon, Yongbum
  • Kim, Sungsoon
  • Yun, Jeungjai
  • Kim, Eugene
  • 외 8명
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18
Citations

SCOPUS

21

초록

The acceleration of eco-friendly energy generation technologies has been driven by pressing environmental issues such as global warming. Among the promising approaches is electricity generation from infinite moisture. Water evaporation-based power generation has garnered significant attention due to its capability for continuous power generation. However, existing devices face challenges in maintaining long-term generation and producing sufficient voltage and current. In this study, we introduce a cellulose sponge-based hydrovoltaic power generator (CHPG) as a power source for hydrogen production. A single CHPG (3.0 x 1.0 x 0.7 cm 3 ) achieves an opencircuit voltage of approximately 0.47 V and a short-circuit current of approximately 477 mu A under relative humidity of 45 -50 % at 25 degrees C. To enhance water electrolysis for hydrogen production, we optimized and scaled up the CHPGs into modules (six CHPGs in series) and packages (six CHPG modules in parallel). Consequently, the generator with three packages connected in parallel produces 2.09 V and 3.11 mA. This configuration enabled hydrogen gas generation at a rate of 81.0 mu mol h-1 from the electrode. This study lays the groundwork for future research aimed at hydrogen gas production through hydrovoltaic electricity.

키워드

Cellulose spongeHydrovoltaic generatorNanocarbon coatingWater electrolysisWater evaporationELECTRICITY-GENERATIONEVAPORATIONDRIVENENERGYCARBON
제목
A novel water electrolysis hydrogen production system powered by a renewable hydrovoltaic power generator
저자
Lee, Seung-HwanKwon, YongbumKim, SungsoonYun, JeungjaiKim, EugeneJang, GyuyongSong, YosebKim, Bum SungOh, Chang-SukChoa, Yong-HoKim, Jae-YupPark, Jong HyeokJeong, Da-Woon
DOI
10.1016/j.cej.2024.153411
발행일
2024-09-01
유형
Article
저널명
Chemical Engineering Journal
495