Synergistic improvement of biohydrogen yield from food wastewater using Clostridium puniceum and magnetite-biochar

  • Oh, Jinok
  • Han, Yebin
  • Lim, Gaeun
  • Bhatia, Shashi Kant
  • Kim, Yun-Gon
  • 외 3명
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초록

Biohydrogen production using waste resources and microorganisms was gaining attention as a clean energy alternative that could reduce production cost and environmental pollution. Among waste resources, food wastewater (FW) was especially suitable due to its high lactate content, which supported microbial hydrogen production. However, FW also contained inhibitory compounds that could limit microbial activity. Considering biochar was known to adsorb heavy metals and emerging pollutants and magnetite was known to promote electron flow between microbial cells and the extracellular environment, our approach combined magnetite biochar (MBC) to improve hydrogen production from anaerobic strain by finding suitable match of Clostridium. To realize this, seven Clostridium was examined to find the optimal strain, and as a result, Clostridium puniceum showed the most significant synergistic effect with lactate and MBC. Under optimized conditions, the addition of MBC increased lactate consumption by 2.1 times compared to the control without MBC and hydrogen production was improved by 37.6% within 12 h. Furthermore, the MBC retained its functional capacity for at least 6 cycles of reuse. Finally, the same conditions were applied to actual FW resulting in comparable result with pure lactate, showing the practical application and the robustness of system. Since C. puniceum has not been widely studied as

키워드

Clostridium puniceumAnaerobic digestionBiohydrogen productionMagnetite biocharLactate uptakeFood wastewaterHYDROGEN-PRODUCTIONANAEROBIC FERMENTATIONCORNSTALK
제목
Synergistic improvement of biohydrogen yield from food wastewater using Clostridium puniceum and magnetite-biochar
저자
Oh, JinokHan, YebinLim, GaeunBhatia, Shashi KantKim, Yun-GonLee, Sang-HoKim, Jae-SeokYang, Yung-Hun
DOI
10.1016/j.biortech.2025.133204
발행일
2025-12
유형
Article
저널명
Bioresource Technology
438