A splitter and semi-concentrate bypass prevent dewatered slurry slug formation while preserving partial separation into the downstream spiral.
Hydrocyclone and spiral stages separate copper from basalt tailings, turning waste into supplementary cementitious material.
Bottom-fed ore and air pulsing separate particles by specific gravity in a smaller chamber that cuts water and power use while enabling mobile mineral processing.
High-pressure water jets detach binders from rock grains without damaging them, reducing energy use in building material recycling.
Carrier elements move through the water, reverse captured sheets, and discharge them to reduce labor and sorting interruptions.
A screw conveyor with paddle washing separates and cleans heavy fractions while water flow transfers light material.
A voice coil motor switches tailored vibration wave trains to stratify particles by specific gravity and reduce gold loss in tailings.
Controlled paddlewheel speed and stratification separate heavy and light waste fractions across linear processing units.
A staged cyclone process separates carbon and cesium from mine refuse, recirculating water before targeted leaching and recovery.
Liquid classifier system detaches ultrafine particles from atomized powder, resolving flowability issues caused by particle adhesion.
A spiral chute uses a compound radial cross-section curve to expand mineral grain looseness.
A spiral trough with a reduced cross-trough floor slope refines the concentrate band in mineral separation.
Segmented teeter bars and round housing sections resolve maintenance access conflicts while improving flow distribution for efficient density separation.
A metering pump and valve in the extraction pipe stabilize underflow discharge, suppressing shelving and flushing.
Curved ribs and finishing fins in a concave gold pan trap heavy materials via gravity flow, reducing manual skill requirements.
A gold separation pan uses a baffle plate to form a protected pocket for undisturbed granular material retention.
Upward water flow lifts wet wood to a mesh screen, separating it from high-density materials while reducing water consumption.
Curved sidewall gold pan traps black sand in ridge cavities while rinsing blonde sand, reducing panning time and preventing gold loss.
An inverted up-flow separator uses distinct column velocities to concentrate target minerals from tailings.
A multi-stage conveyor system uses a toothed belt and water flow to separate copper wire from shredded vehicle waste.
Synchronous liquid supply counteracts suction effects during displacement withdrawal, preventing material loss and improving separation accuracy.
A three-stage cyclone system recovers high-quality anthracite from refuse slurry using recycled water and specific gravity control.
A mobile light material separator uses a self-propelled caterpillar chassis to transport and fractionate mixtures independently.
A modular mini jig system separates fine gold particles by size and specific gravity using a duplex drive mechanism.
A confined bubble moves through a capillary tube to separate suspended particles based on size using the lubricating film gap.
Vertical vortex generators invert traditional horizontal flow patterns to prevent gold loss during high feed rates and enable continuous automated collection.
Segmented riffles return coarse ore to the gold line, stabilizing separation and reducing tailings loss.
A swirling alkaline solution detaches egg shell membranes from shells using chemical dissolution and fluid dynamics.
Turbulence generated by an agitator separates sand from dairy manure, enabling clean sand reuse without complex conveyors.
Segmented trough modules enable multi-start configurations that increase feed capacity without raising structural complexity.
A compact gold pan machine uses vibration and water spray to separate heavy metals from alluvial material.