An integrated ozone water generating device merges the generator and ejector into one housing to eliminate exposed air pipes and improve safety.
Segmented rotor-stator stages apply variable shear to disperse additives while preserving polymer chains, reducing cuttings bed formation.
Annular mixing bowl and flow tube configuration resolve complexity trade-offs by improving DEF homogeneity without mechanical flappers.
A hydraulic pump system with a piston and valve mechanism mixes additive fluids with primary water streams.
Twin screw pumps eliminate backflow in powder induction systems by creating controlled vacuum and pressure differentials that prevent wetting and jamming.
A solution supplying unit mixes sulfuric acid and hydrogen peroxide using tangential rotation and central injection.
Immiscible plug displacement mixes fluids in microchannels, eliminating active mixer complexity.
A microfluidic chip system uses a single vacuum device to drive fluid flows, resolving complexity and flow inconsistency issues in single cell gene sequencing.
A mixer pipe divides exhaust gas into opposing rotational inflows to create turbulence structures for reactant mixing.
A self-cleaning negative-pressure ejector uses a flushing member to remove solid particles and water vapor from the suction chamber.
Electronic control adjusts injection frequency based on flow rate, ensuring accurate odorization across varying pipeline conditions.
Helical vanes in the redistribution element mix outer and central melt portions, reducing shear stress imbalances across manifold outlets.
Adjustable propeller shaft assemblies in attrition mills induce repetitive churning motions to clean aggregate particles through abrasion and friction.
A return flow plate generates a vortex to expand urea droplet surface area, preventing crystallization on cold exhaust surfaces.
Axially spaced rotor elements create a shearing gap that resolves the trade-off between high shear stress and effective powder dispersion.
Inflow portion channels exhaust gas into the fuel injection path to prevent deposit formation caused by fuel evaporation and soot accumulation.
A micro bubble generating device uses a Venturi tube and aerator mesh to mix air with water.
Finger-type mixing ducts inject recirculated flue gas into fresh airflow upstream of the compressor to prevent flame instability and incomplete combustion.
Closed-circuit circulation in a sealed pouch eliminates phase separation and sedimentation while vacuum sensors ensure maximum residual emptying.
An accumulator stores pressure from a pump while a valve releases it to actuate a piston, replicating industrial conditions in lab equipment.