An impact centrifugal separator uses kinetic energy to separate liquid from gaseous phases in supercritical fluid systems.
A bubble trap apparatus diverts fluid flow radially to prevent hazardous gas bubbles from reaching the patient outlet.
A heater-cooler system uses a biocidal heat transfer fluid to prevent bacterial growth in perfusion circuits.
A return conduit diverts cavitation bubbles from liquid flow to stabilize ion signals despite pump oscillations.
Vapour permeable membranes recover latent heat to cut thermal energy consumption by 50% in amine-based CO2 capture systems.
A channeled compression tube traps abrasive solid particles in its internal channels to protect the rotor assembly from wear.
An ozone destruction device converts excess ozone into oxygen using manganese dioxide, preventing atmospheric release of harmful gases.
A condensation device pre-cools extracted drilling gases using environmental air to separate moisture from the gas stream.
A system recovers ammonia from liquid using reverse osmosis concentration and chemical pH adjustment.
Capillary compression tubes enforce unidirectional emulsion flow to dissipate heat during rapid compression, reducing energy consumption.
Segmented separation headers resolve two-phase flow inadequacy in fine channels, maintaining large gas/liquid ratios for efficient absorption.
Descending branch pipes guide sand to collection points, eliminating upstream removal devices that increase component count.
An inclined desanding apparatus separates solid particulates from gas and liquid streams using a treatment chamber and recovery zone.
A heated reboiler uses flue gas to strip carbon dioxide from liquid absorbent.
Double-walled cooling pipes with a scraper cleaning system prevent clogging in polymer melt degassing units.
A lubrication de-aerator uses tapered cell matrices to intercept slung lubricant and separate entrained air from the fluid.
A twinned inlet distributor device segments incoming fluid streams into multiple vertical risers to decelerate flow and guide separation within a cylindrical tank.
A steam ejector creates vacuum in flash tanks using high-velocity motive fluid jets to separate gases from black water streams.
Start-up absorbers capture syngas emissions during IGCC initialization, storing gases in rich solvent tanks until main acid gas removal systems stabilize.
A bubble isolation apparatus separates gas from liquid using a central column and annular coupling tube to collect bubbles.
Nested centrifugal separation zones remove solids and gases from fluid streams, preventing equipment damage in subsea operations.