Apertured stem deaerator spirals coolant to separate air via centrifugal force, reducing recirculation time in aircraft auxiliary power units.
Curvilinear and vortex cluster systems extract gas bubbles from hydraulic fracturing fluids to prevent pump cavitation and erosion.
A cylindrical vane inlet apparatus uses progressively smaller apertures to redirect feed streams uniformly across separation stages.
Continuous flow channels connect cover plates to substrate through holes, enabling complete sample filling in chip packaging structures.
Segmenting vaporization and condensation zones maintains a gas-free transfer path, reducing energy consumption for desalination.
A two-stage hydrocracking process uses a compartmentalized gas/liquid separator to recover diesel oil and limit overcracking.
A treatment unit removes contaminants from sour water using chemical reactions.
A liquid system separation device uses a debubbler and mesh shield to direct fluid flow while preventing germ migration.
A degassing tank uses a bell-shaped guidance member to direct coolant flow in a 180-degree arc toward the lower wall.
A separator removes gas bubbles from sodium hypochlorite before the pump, preventing malfunction and overheating.
A static mixer blends stock components before the deaeration tank inlet.
SuperDegas process uses vertical pumps and air spargers to degas liquid sulfur in an underground container.
Injecting heavy feed at the reactor top eliminates upstream distillation costs while reducing gas retention and foaming issues in the catalyst bed.
Segmented heat exchangers and vapor condensate rerouting lower regeneration energy consumption while maintaining high acid gas capture rates.
A multi-phase flow separation apparatus uses a vessel enclosure to decelerate fluid velocity and separate solid particulates.
Replacing corrosive conventional desiccants, ionic liquids remove water vapor via electrostatic interactions without toxicity or precipitation risks.
A modular ammonia stripper cassette integrates subsurface aeration with heat exchanger tubing to drive ammonia out of solution at elevated temperatures.
Deep sulfur removal below 10 ppmv prevents amine solvent degradation, reducing energy consumption and sludge generation.
A gas extraction device uses a pressure controller and flow regulator to maintain constant carrier gas flow from drilling mud enclosures.
A venting device uses a common connection nipple and guide bend to separate gas from liquid fuel within the filler pipe.
Agitation gas blends with process gas to drive a sulfur degassing catalyst that converts dissolved H2Sx into recoverable hydrogen sulfide and elemental sulfur.
A fluid tank filter device with an enlarged upper end portion creates a flow calmation zone for laminar cleaned fluid discharge.
A dual-use fluid filtration tool separates solids and gas from downhole fluids using a cylindrical filter and helical fan mechanism.
A degassing vascular access device uses sterile fluid flow to collect and remove air bubbles from the instrument passage.
Curved flow conducting element extends fluid dwell time and increases centrifugal force to separate micro-bubbles at high dialysis flow rates.
A liquid delivery device integrates an adsorptive suction filter to remove dissolved contaminants from the mobile phase before it enters the pump.
Converting mercury to elemental form eliminates filter plugging and reduces energy costs during crude oil processing.
Introducing a flush fluid fluidizes accumulated sand into a slurry that elutriates through the vessel, eliminating manual access to toxic wellbore gases.
Inclined profiled holes in a pipe wall reduce flow velocity to prevent emulsion formation during liquid-gas separation.
Water vapor atomization reduces thermal stress on polymers while accelerating organic solvent removal.
Beta-alkylated alcohols replace persistent petrochemicals to reduce foam volumes while maintaining environmental sustainability.
Spacing the air motor from the degasser chamber and redirecting leakage prevents air contamination of sample gas while simplifying maintenance access.
A medical fluid delivery system de-gases and re-gasses liquids using vacuum, heating, and sonication to control dissolved gas concentrations.
Vertical stages with rod electrodes coalesce water droplets via electrostatic induction, resolving shear-induced particle rupture in horizontal separators.
An inner segment bypass duct diverts heat transfer fluid flow to prevent gasification and noise generation in compact automotive cooling system venting tanks.
Evaporates water and strips ammonia from leachate, reducing volume by 7-10% while cutting ammonia content by up to 90%.
Heat regenerators preheat gas streams to reduce fuel consumption during volatile compound oxidation.
Integrated impact body directs fluid flow onto its surface to separate gas from the delivered liquid, resolving complex alignment requirements during assembly.
A fuel gas separator uses a permeable core to extract stripping gas from liquid fuel mixtures.
Preheating absorbent with exhaust gas waste heat reduces reboiler duty and energy consumption.
A buffer apparatus baffle redirects liquid inflow to minimize bubble generation, preventing non-uniform thin film deposition and reducing production costs.
Stacked separation cylinders use the chimney effect to vent gas, preventing pump locking and maintaining liquid flow.
A single vertical column integrates mixing, settling, and mass transfer zones to treat spent caustic waste streams.
A vapor compression distillation device uses hexagonal polypropylene tubes to transfer heat efficiently.
Automated positioning prevents user errors and equipment damage during distillation testing.
Spiral swirl vane diffuser increases hydraulic efficiency to 72 percent and reduces effluent oil concentration below 50 ppm.
A cyclone separator uses a flow velocity deflector to redirect liquid film motion.
Composite ionic liquid solvent reduces energy consumption during regeneration by enabling low-temperature desorption of absorbed gases.
A negative pressure forming device uses a gas chamber and elastic members to maintain vacuum in liquid containers.