Sequential reactions toward a high-pressure H<sub>2</sub> generation from a mixture of sodium borohydride and formic acid

  • Ramadhani, Safira; 
  • Kim, Chan; 
  • Kirk, Jaewon; 
  • Sohn, Hyuntae; 
  • Nam, Suk Woo; 
  • ... Song, Kwang Ho; 
  • 외 2명
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10

초록

Chemical compression enables direct high-pressure hydrogen generation from chemical hydrogen storage materials in a closed system. By utilizing a water-soluble catalyst, this method achieves rapid formic acid (FA) -mediated sodium borohydride (SBH) hydrolysis, followed by FA dehydrogenation at moderate temperatures, using a mixture of SBH and FA. The sequential reactions facilitate simultaneous dehydrogenation of both carriers without mutual inhibition, resulting in impressive hydrogen pressures (650 bar) and storage capacities (4.22 wt % and 48.25 gH(2) L-1) with minimal CO content. The exothermic SBH hydrolysis and endothermic FA dehydrogenation effectively enable heat -coupling reactions, enhancing overall process efficiency. Moreover, the study introduces a cost-effective SBH regeneration method, evaluating the closed hydrogen cycle's feasibility in SBH-FA chemical compression technology. Economic analysis demonstrates reduced compressor size and overall cost benefits at hydrogen fueling stations, making this innovative approach promising for fuel -cell -based electric vehicle refueling at 700 bars, with potential energy and cost savings.

키워드

chemical compressor; chemical hydrogen storage materials; formic acid; high-pressure hydrogen generation; sodium borohydride; HYDROGEN STORAGE; AMMONIA-BORANE; DEHYDROGENATION; ENERGY; FORMATE; DECOMPOSITION; REGENERATION; HYDROLYSIS; CHALLENGES; REDUCTION
제목
Sequential reactions toward a high-pressure H<sub>2</sub> generation from a mixture of sodium borohydride and formic acid
저자
Ramadhani, Safira; Kim, Chan; Kirk, Jaewon; Sohn, Hyuntae; Nam, Suk Woo; Kim, Yongmin; Song, Kwang Ho; Jeong, Hyangsoo
DOI
10.1016/j.xcrp.2023.101759
발행일
2024-01-16
유형
Article
저널명
Cell Reports Physical Science
권
5
호
1