92 West Dazhi Street
Nan Gang District
Harbin, 150001
China
Harbin Institute of Technology
Biochar;Carbonization;KOH activation;Hydrogen storage
Biochar, KOH activation, CO2 adsorption, Structural-effect relationship
Biochar; KOH activation, CO2 adsorption, Structural-effect relationship
Sugar Products, Life-Cycle, Carbon Footprint, Carbon Emission Factor
Targeted construction, Pore structure, Microporosity, Porous biochar, Carbon capture
Biochar;Trace KOH, Catalyzed activation, CO2 activation, Carbon capture
MSWI-fly ash, Complex atmosphere, Fluxing agent, Heavy metals, Melting characteristics
Biochar, Silica, Cogeneration, Energy value analysis, Economic evaluation
Biomass-plastics, H2-CNTs, Co-production, Catalytic regulation
Biochar;Carbonization;KOH;Activation mechanism
Biochar, K2CO3, Multi-concentrations of CO2, Cross-linking capture
Biochar;Pore structure;Oxygen-containing groups;KOH activation;Hydrogen storage
Variable load, Coal-Fired Boiler, Horizontal bias burner, Stable combustion at low load, Flexibility peak shaving
Biochar;Hydrogen storage;H2O etching;Adsorption characteristics
biochar, CO2 capture, Ammonia method, Enhanced mass transfer
Pressure, active atmosphere, O2/CO2, devolatilization, nitrogen conversion
Biphasic solvent, MDEA, DETA, Sulfolane
Cyclone furnace, MSWI fly ash, Particle deposition model, Particle deposition rate, Particle escape rate
Biochar;Heteroatoms doping;Water purification;CO2 capture;Toluene adsorption
Surface modification, pore structure, synergistic regulation, porous biochar, ultra-micropore filling rate