Descending slides with ultrasonic transducers separate inorganic particles from coal pieces, reducing mechanical grinding costs.
Flow channel internals limit vortices to resolve throughput versus separation precision trade-offs.
A fluidized bed powder classification system uses inert gas flow to separate particles within a sealed environment.
A shredder dust treatment method separates metal scraps from organic residues into fibrous and particulate fractions for resource recovery.
A vibratory sorting system uses pneumatic air streams to stratify and separate solid waste materials by density.
Adjustable airflow nozzles and variable-speed drums separate mixed waste fractions, preventing clogging and equipment damage.
A conveyor with a magnetic roller separates metals from aluminum cans while an air duct filters debris.
A compact dedusting apparatus uses an internal vacuum generator to induce airflow through the housing for efficient particulate separation.
Inclined trough with angled riffles and vibratory motors separates compost contaminants using differential material resilience.
Segmented counter knife tiers utilize kinetic energy to reduce chip width and improve uniformity without additional downstream processing.
A magnetic bar and porous member screen ferrous tramp articles from fine bulk material flow through a housing conduit.
Gas injection below the material level absorbs moisture and volatiles, preventing extruder performance loss and energy waste.
Opposing blades reduce debris volume and prevent clogging by shredding material into fine particles.
Controlled pneumatic blowing lifts light fractions from construction waste without generating dust or requiring high electrical power.
Deep-chamber stepped fluid-energy mill design with interlocking liner joints enhances particle retention through controlled radial discontinuities.
Vibratory motion and perpendicular air flow lift plastic contaminants over a longitudinal dam, resolving inefficiency in separating mixed waste streams.