See how a porous honeycomb structure with radial liquid feed and jacket flow path enables preci
See how a porous honeycomb structure with radial feed holes and jacket flow path enables precis
See how a demister transfers thermal energy from the liquid stream to evaporate entrained dropl
See how a dual-separator liquid blocking device combines a plate baffle and mesh structure to r
See how a filter mesh with thicker peripheral zones and thinner central zones balances refriger
See how a perforated baffle with 40% void ratio and open axial sides reduces gas velocity and l
See how ejector-driven recirculation and flow guides eliminate bypass flow in plate-pack evapor
See how a horizontal shell integrates plate pack evaporator and gravitational separator with fi
See how a horizontal suction duct with side openings enables compact evaporator design by elimi
A plate-pack evaporator with filler units and gravity separation cuts refrigerant volume, shell size, and droplet carryover in refrigeration.
Dual opening control on one on-off valve stabilizes tank pressure and temperature while enabling high-flow purge and larger tank capacity.
An internal tubular heater with conductive resin and an optional insulating sleeve prevents ice build-up inside demister tubes.
Directing gas turbine exhaust onto high-salinity wastewater enables on-site evaporation, cutting remote transport costs and leaving salts behind.
Gas bubbles create rotational flow to continuously extract and evaporate solvent from microsphere emulsions without motor stirring.
Sprayed demister and chimney tray sections curb liquid entrainment and solute precipitation in acetic acid effluent separation.
Textured heating surfaces limit niter contact in syrup evaporators, easing cleaning while preserving heat-transfer efficiency.
Fixed pressure and temperature sensors track blow velocity and evaporation capacity, guiding timely pulp dryer filter-net cleaning.
Waste heat links two separation columns through compressor-assisted exchange, reducing external heating and cooling energy while supporting recovery.
Localized peaks and valleys limit niter contact on syrup evaporator surfaces, helping preserve heat transfer and simplify cleaning.
Guides without heat sources manage downward liquid flow to prevent thermal degeneration and contamination during high-viscosity evaporation.
A kettle reboiler liquid-vapor separation assembly uses cyclonic flow initiators to de-entrain droplets from vapor streams.
A mixing kneader processes cellulose transfer mixtures using mechanical energy input to form molding solutions.
Branching distributor lines with equal pressure loss prevent non-uniform liquid charging that limits evaporator capacity and increases exit gas temperature.
A vapor trap device captures vaporized components from plant materials using specialized trapping media for efficient separation.
A multilayer thin film evaporator uses a nested three-layer cylindrical core to expand the heat transfer surface area within a compact housing.
Suspended evaporation elements use hydrophilic materials to maximize wind exposure, reducing groundwater contamination while increasing evaporation capacity.
Vacuum flash drum removes hydrogen from polyolefin suspension, enabling distinct molecular weight distribution between reactors without multiple drums.
An impurity trap captures condensed phosphorus before it drops back into the melt, maintaining stable concentration during vacuum refining.
Segmented tube bundles extract non-condensable gases to purify condensate while reducing heavy construction weight.
Condensing vapour releases latent heat to control sample temperature, preventing overheating during high-rate evaporation.
Robotic application of self-curing liquid masks replaces manual labor, reducing manpower needs while ensuring sharp color transitions and high reproducibility.
A thin film evaporator heats a cellulose mixture to evaporate water and form a transfer mixture.
A multi-effect evaporation tower purifies condensed water using gravity-driven phase transitions and integrated heat exchange.
Pulse dosing cleaning formulations into fluid process streams reduces deposit and bacterial buildup in ethanol processing facilities.
Segmented rotor teeth distribute high viscosity material up to 15,000 Pas on a heated surface, preventing flow stagnation and thermal degradation.