See how a vortex separator, eductor, and accumulator remove non-condensable gases before the pu
See how a dual super-hydrophilic and hydrophobic filter system with pressure control valves pre
See how cloud-based sensors and graphical interfaces enable real-time HVAC water quality monito
See how distributed sensors, cloud analytics, and automated feedback enable comprehensive water
See how segmented electromagnetic induction heating enables rapid water heating above 75°C whil
See how a vortex separator, eductor, and accumulator passively separate non-condensable gases f
See how a segmented heating duct and electromagnetic induction winding enable rapid water heati
Interchangeable fluidic modules and a separated panel layout simplify upgrades and repairs without adding footprint or connection complexity.
A single fill manifold with level sensors cuts fryer piping and oil volume while supporting filtered and new oil delivery.
A pump volute filtration opening diverts debris-laden wash fluid for continuous particulate removal without extra pumping or wash downtime.
A vented drain chamber separates macerated food soils from wash fluid, preventing recirculation into the dishwasher cleaning loop.
Bare rigid conductors in insulating liquid replace desalter entrance bushings to prevent partial discharges without major structural changes.
Monitors detect corrosive fuel conditions while an eductor-driven filter removes water and particulates before they damage pumps and vehicles.
Heated, high-pressure circulation improves membrane water removal from IPA mixtures, speeding solvent recycling while preserving solvent integrity.
Separate dewatering and purification loops let water-containing solvent be concentrated and filtered under different conditions, cutting scale and filter heat damage.
A solenoid-driven piston opens the air vent and liquid outlet together, preventing vacuum lock and fully draining contaminants from filter bowls.
Sensors detect acidic fuel conditions, while eductor-based filtration removes water and particulates to limit tank corrosion and fuel contamination.
A solenoid piston opens air and liquid paths together to prevent vacuum lock and fully drain water from fuel filter bowls automatically.
Supplying water into the centrifuge chamber maintains density differences, separating ammonia water from engine lubricating oil and preventing leakage.
Supplying water into the separator chamber restores density difference and boundary position, keeping ammonia-contaminated engine oil separation stable.
A liquid-in-fuel sensor and battery-powered pump automatically drain sump water to keep it out of the fuel stream and cut manual service risk.
UVC illumination on water-in-fuel sensor probes suppresses microbial growth, preserving detection reliability and reducing sump maintenance.
Upstream operating parameters and fluid quality estimates predict pipeline water buildup, enabling timely pigging with lower cost and corrosion risk.
Real-time emulsion volume detection lets a separator adjust demulsifier dosing automatically, improving oil-water separation and reducing oil loss.
Pressure and temperature sensors around an in-plant valve estimate flowrate without hardware flowmeters, cutting cost and retrofit effort.
Multi-level sensing and active froth handling improve gas-liquid separation and keep fluid level readings reliable across different fluids.
When cellular service drops, telematics relays filtration and engine data through a local operator device to avoid loss and maintenance delays.
Real-time velocity profile sensing detects bitumen in coarse tailings flow, guiding diversion to improve recovery and cut water discharge.
A PWM-driven sealed pump-valve removes water from diesel without air entry, using redundant electrical and electromagnetic detection with metering.
PWM-driven plunger metering removes water from fuel without air ingress or fuel loss, while adding redundant detection for diagnostics.
Phase angle feedback adjusts time-varying voltage in electrostatic separators to maintain oil-water separation despite changing stream composition.
Phase angle feedback adjusts time-varying voltage in electrostatic separators to keep oil-water separation stable despite changing feed properties.
Phase angle feedback tunes time-varying voltage in an electrostatic separator to handle variable oil-water streams and limit phase breakthroughs.