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Yuhang Jing

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Open access 2026

Cascade catalysts from heavy bio-oil for plasma-catalytic NH3 synthesis

Plasma-assisted ammonia synthesis (PAAS) enables the production of ammonia at ambient temperature and pressure by utilizing high-energy free electrons to break N≡N and H-H bonds. This process leverages green electricity and hydrogen, offering an efficient and distributed alternative for renewable energy storage. However, conventional catalysts used in PAAS (Al2O3, metal-organic frameworks, molecular sieves, etc.) suffer from low efficiency, poor cycling performance, and high cost. Herein, we design and develop novel cascade porous biochar-based catalysts (Co-PB) derived from waste heavy bio-oil through catalytic pyrolysis by using cobalt nitrate as a pyrolysis catalyst, giving rise to a highly porous structure with uniformly distributed Co in Co-PB. The good mobility of heavy bio-oil ensures homogeneous C-Co bonds, which further enhances the transfer kinetics of the interfacial electron and the radical. As a result, Co-PB achieves a high PAAS rate of 1.605 mmol/g·h and exhibits excellent stability and cyclability under harsh electric fields. Economic and environmental assessments highlight the significant potential of PAAS for sustainable hydrogen and electricity storage.

Feng Gong, Juntao Bao, Yuhang Jing et al. · 0 citations

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