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Double-Impeller Leaching Tank

Double-impeller leaching tanks are used for stirring, leaching, and activated carbon adsorption in gold cyanide plants. Typically, the slurry fineness in a double-impeller leaching tank should be at least 200 mesh (75%), and the slurry concentration should be less than 45%. The working principle of a double-impeller leaching tank is as follows: under the action of the impellers, the slurry flows from the top downwards to the center, diffuses through the surrounding damping plates, and then mixes with air supplied from the bottom.

  • Feed particle size: ≤0.074mm
  • Production capacity: 6–395 m³/h
  • Applicable materials
  • Gold extraction: used for cyanide leaching and carbon adsorption operations in CIP/CIL processes;
  • Complex and difficult-to-process gold ores: such as high-mud content oxide gold ores, fine-grained disseminated gold ores, sulfide-encapsulated gold, arsenic-bearing gold ores, etc.;
  • Other metallurgical and chemical fields: can be used for wet leaching of metals such as copper and silver, as well as mixing and stirring operations in the chemical industry.
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The double-impeller leaching agitator is a high-efficiency and energy-saving mixing device specifically designed for cyanide leaching processes of gold and other precious metals. It is widely used in CIP (carbon-in-pulp) and CIL (carbon-in-leaching) gold beneficiation processes. Compared with traditional single-impeller agitators, its upper and lower double-impeller structure significantly improves the uniformity of slurry mixing and oxygen dispersion, while reducing energy consumption and activated carbon wear. It is one of the core pieces of equipment in modern gold ore leaching operations.

Working Principle

双叶轮浸出搅拌槽工作原理

The dual-impeller leaching mixing tank achieves efficient circulation and uniform mixing of the ore slurry through the synergistic action of the upper and lower impellers. During operation, a motor drives the vertical shaft, rotating both impellers. The ore slurry flows from top to bottom in the central region, spreading through the surrounding damping plates to form a stable vortex.

Air enters the tank through air inlets at the bottom or around the hollow shaft. Under the shearing action of the impellers, it is broken into tiny bubbles and evenly dispersed in the ore slurry, increasing dissolved oxygen content and promoting the cyanidation reaction.

This process not only ensures the stability of the ore slurry suspension but also optimizes the gas-liquid-solid three-phase contact efficiency, thereby improving the gold leaching rate and carbon adsorption rate.

Product Structure

双叶轮浸出搅拌槽产品结构

The double-impeller leaching mixing tank mainly consists of the following parts:

  • Transmission system: Includes a motor, reducer, and coupling, providing power and regulating speed.
  • Vertical shaft system: Connects the upper and lower impellers, transmitting torque.
  • Dual impeller assembly: Each impeller has a large-diameter rubber-lined impeller, typically arranged with a 45° phase difference to enhance mixing.
  • Tank body: Cylindrical structure, lined with corrosion-resistant materials (such as rubber or epoxy fiberglass), the bottom can be flat or conical.
  • Damping plates (baffles): Installed on the inner wall of the tank to prevent swirling and enhance mixing.
  • Hollow shaft ventilation system: Achieves uniform air supply from the bottom, preventing gas short-circuiting.
  • Shaft sealing device: Prevents slurry leakage and ensures operational sealing.

Product Advantages

  1. More uniform mixing: The dual-impeller design ensures consistent slurry concentration and fineness distribution within the tank, avoiding sedimentation dead zones.
  2. Energy saving and reduced consumption: Power consumption per unit volume is as low as 0.034kW/m³, saving over 80% energy compared to traditional equipment.
  3. Extended impeller life: Rubber-coated impellers operate at low speeds (typically 16.4–65 r/min), are wear-resistant and corrosion-resistant, and have a long service life.
  4. Reduced carbon wear: Low shear force effectively protects the integrity of activated carbon and improves the adsorption rate.
  5. Uniform aeration: Hollow shaft or multi-point air supply system ensures fine and evenly distributed bubbles, improving oxygen utilization.
  6. Compact structure and convenient maintenance: Modular design allows for easy replacement of key components and supports customized configurations.
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Model Cell(Diameter×Height)(mm) Effective Volume (m³) Impeller Impeller (mm) Cyclical Planetary Reducer Weight (kg)
Rotation Speed (rpm) Diameter (mm) Feeding Tube Output Tube Model Ratio Motor Power (kw) Cell
Weight
Total Weight
SJ2.0×2.5 2000×2500 6 52 909 2-c133 2-C133 XLD2.2-4-29 29 2.2 1609 2144
SJ2.5×3.15 2500×3150 13 52 935 2-4125 2-Ø125 XLD2.2-4-29 29 2.2 2398 3095
SJ3×3.15 3000×3150 18.9 43 1130 2-Ø150 2-Ø150 XLD4-5-35 35 4 2480 4160
SJ3.55×4.0 3550×4000 35 43 1310 2-Ø150 2-0150 XLD4-5-35 35 4 4260 5025
SJ4.0×4.5 4000×4500 48 35 1750 2-&150 2-&150 XLD7.5-7-43 43 7.5 6397 7569
SJ4.5×5.0 4500×5000 71.6 35 1750 2-C159×6 2-Ø159×6 XLD7.5-7-43 43 7.5 8614 10864
SJ5.0×5.6 5000×5600 98 31 2046 2-Q159×8 2-Q159×8 XLD11-8-47 47 11 8740 14291
SJ5.5×6.0 5500×6000 112 31 2100 2-Ø159×8 2-C159×8 XLD11-8-47 47 11 12467 18745
SJ6.5×7.0 6500×7000 215 21 2400 2-Ø159×8 2-C159×8 GRF147-Y22-4P-70.87 47 22 17890 25978
SJ7.0×7.5 7000×7500 245.4 21 2400 2-Ø159×8 2-&159×8 XLD22-10-47 47 22 20505 29030
SJ7.5×8.0 7500×8000 268.6 23 2900 2-Ø168×8 2-Ø168×8 XLD22-10-47 47 22 22552 32796
SJ8.0×8.5 8000×8500 342 18.5 3300 2-0168×8 2-C168×8 TPS315-3F 59 30 30559.5 42467.3
SJ8.5×9.0 8500×9000 395 18.5 3300 2-4219×8 2-&219×8 TPS315-3F 59 30 34130 46623

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