PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 6, 2026Journal of the Turkish Chemical Society Section B Chemical Engineering0 citationsOpen Access

Enhanced Hydrogen Generation via NaBH4 Methanolysis Using Novel Acorn Cup-Derived Activated Carbon through CH3COOH–CoCl2 Co-Activation

UIUğur Işık

Key Points

  • The research aims to optimize a novel catalyst derived from acorn cup biomass for hydrogen generation via sodium borohydride methanolysis.
  • Synthesis and characterization of Ac-Co-500 from acorn cup biomass.
  • Evaluation of hydrogen generation efficiencies under varying catalyst loading, sodium borohydride amount, and temperatures.
  • Analysis using FT-IR, SEM, and SEM-EDX techniques.
  • Achieved a hydrogen generation rate of 6796 mLmin-1gcat-1 within 2.33 minutes.
  • The activation energy was measured at 14.09 kJ/mol, indicating efficiency.
  • Reusability assessed over four cycles, with increasing reaction times.

Abstract

In this study, a novel catalyst (Ac-Co-500) derived from acorn cup biomass waste was synthesized, characterized, and optimized for hydrogen generation via sodium borohydride (NaBH4) methanolysis. The elemental and structural properties of the catalyst were investigated using FT-IR, SEM, and SEM-EDX analyses. Hydrogen generation efficiencies were evaluated, showing that catalyst loading, NaBH4 amount, and reaction temperature substantially influenced the reaction kinetics. Remarkably, the NaBH4 methanolysis reaction catalyzed by Ac-Co-500 exhibited a hydrogen generation rate of 6796 mLmin-1gcat-1 and was completed within 2.33 minutes, yielding approximately 670 mL of hydrogen. The activation energy was measured at 14.09 kJ/mol, which is comparatively low relative to both metal-free and metal-based catalysts noted for similar applications. The reusability of Ac-Co-500 was also assessed over four cycles, with hydrogen generation time gradually increasing with each cycle. Overall, the results indicate that Ac-Co-500 is a promising, efficient, and sustainable catalyst for hydrogen production through NaBH4 methanolysis.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Uğur Işık (2026) studied this question.

synapsesocial.com/papers/69aa7027531e4c4a9ff59ae2https://doi.org/10.58692/jotcsb.1836937
Ask AI
Helpful
Bookmark
Share
View Full Paper