A composite material blends cellulose with synthetic polymers to create a sustainable building alternative.
A vanadium alloy membrane enables selective hydrogen permeation while suppressing embrittlement and phase transitions.
Selective H2S absorption removes residual sulfur contaminants from enriched gas streams to meet EOR specifications without oversized equipment.
Biobased cyclodextrin metal organic frameworks capture carbon dioxide while eliminating petrochemical synthesis harm, enabling low-energy solvent regeneration.
Adding a parallel stripping unit splits the reaction mixture, de-bottlenecking the high-pressure section and raising production capacity.
Cobalt-manganese catalyst with carbon dioxide feed increases alcohol selectivity while maintaining C5+ hydrocarbon activity.
Enzymatic hydrolysis converts organic waste into liquid hydrolysate, recovering nutrients while sequestering carbon and reducing environmental pollution.
A biomass reactor uses a rotating rotor to process organic waste into hydrochar and nutrient-rich liquid.
A multi-section heating chamber converts municipal waste into syngas and biochar using vacuum extraction to remove gases from the pyrolysis zone.
Polyoxymethylene dialkyl ether solvents absorb carbon dioxide through physical interaction.
High temperature air preheating lowers the required steam-to-carbon ratio, enabling adjustable export steam flow rates during part-load operations.
Biodegradable biomass coatings replace synthetic agents to resolve the contradiction between anti-caking reliability and environmental harm.
Insulated container uses stack effect to drive vertical airflow through compost, eliminating forced aeration energy costs.