Flotation Separator | Processing fine gold in wet environments | 1.1kW motor (▲1.5x industry standard 0.75kW, ISO 14313) 304 stainless steel (ASTM A240, ▲ corrosion resistance over carbon steel) | High processing capacity, durable construction, water-efficient operation | Requires water supply, higher energy consumption, complex setup |
Dry Washer | Arid regions without water | 1000 CFM airflow (▲20% above standard 800 CFM, ASME PTC 18.10) 50kg portable design (ISO 7094) | No water dependency, lightweight, easy to transport | Ineffective in wet conditions, lower recovery for fine particles |
Gravity Separator | Recovering coarse placer gold | 90% recovery rate (▲5% over standard 85%, ISO 2531) Simple mechanical design | Low cost, minimal maintenance, manual operation flexibility | Ineffective for fine gold, labor-intensive, limited throughput |
Centrifugal Concentrator | High-volume medium-fine gold processing | 3000 RPM (▲25% over standard 2400 RPM, ISO 13374) 2 tons/hour throughput (▲33% over 1.5 tons/hour) | High throughput, efficient separation, compact footprint | Complex maintenance, higher initial cost, requires skilled operation |
Vibrating Screen Classifier | Particle size separation in mining | 0.1mm mesh (ISO 3310 standard) 900 cycles/min (▲10% over standard 820 cycles/min) | Precise particle grading, durable mesh, scalable for large volumes | Slower processing speed, requires frequent calibration, bulky design |
Portable Gold Recovery Unit | Remote prospecting and mobility | 30kg lightweight frame (▲30% lighter than standard 43kg, ISO 7094) Foldable design (ASTM D6413 portability) | Easy transport, compact storage, adaptable to rugged terrain | Lower capacity vs stationary units, limited to small-scale operations |