By raising cryopanel temperature during idle periods, this cryopump cuts power use while maintaining gas capture when pumping demand returns.
Staged subcooling and reheating of CO-rich flows improves refrigeration balance, cuts energy use, and reduces liquid nitrogen demand.
A full-layer CO2 mass transfer zone with NaX zeolite cuts TSA column size and pressure loss while removing NOx and hydrocarbons.
A two-chamber wheel and heater capture frozen turbine exhaust particles, vaporize them, and prevent downstream clogging and damage.
Internal heat exchange and gas expansion remove C5+ hydrocarbons without external refrigerants, cutting footprint and safety risk offshore.
Two converted LNG carriers form an open twin-hull plant that creates process deck space while reducing explosion and side-collision risk.
A residue gas recycle exchanger creates distinct demethanizer reflux streams, enabling ethane recovery or rejection while holding propane recovery.
Controlled CO2 freezing and downstream molecular sieve polishing cut acid gases in sour gas streams without larger refrigeration equipment.
An absorber demethanizer and methane-ethane mixed refrigerant recover ethylene from MTO effluent with lower energy use and less cryogenic cost.
Nitrogen- and oxygen-rich waste gas regenerates the desiccant bed, cutting CO2 loss and drying energy in oxy-combustion CO2 processing.
A dynamic vibration absorber and drive-frequency adjustment help a Stirling cold trap avoid vacuum-vessel resonance and substrate displacement.
A transpiration member shields combustor walls during high-pressure oxy-fuel combustion, enabling efficient power generation and easier CO2 capture.
Panel temperature sensing ends cryopump regeneration accurately with fewer sensors, shortening heating time and protecting the refrigerator.