

A dust suppression fog cannon is widely used to manage airborne dust in mining operations, where dust is continuously generated during drilling, blasting, crushing, and material handling. Effective dust control in mines is essential not only for worker safety and visibility but also for equipment reliability and environmental compliance. Fog cannon–based dust suppression systems provide a practical solution for large, open, and high-dust mining environments.
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Dust Suppression Fog Cannon Parameters
| Big Model | YG-50 | YG-60 | YG-80 | YG-100 | YG-120 |
| Spray Range | 50 meters | 60 meters | 80 meters | 100 meters | 120 meters |
| Spray Flow | 8 m³/h | 8 m³/h | 12 m³/h | 12 m³/h | 15 m³/h |
| Water Pump Stroke | 140 meters | 140 meters | 160 meters | 180 meters | 185 meters |
| Atomized Particles | 30-150 μm | 30-150 μm | 30-150 μm | 30-150 μm | 30-150 μm |
| Horizontal Rotation Angle | ±160° adjustable | ±320° adjustable | ±320° adjustable | 160° adjustable | 0-320° adjustable |
| Up and Down Pitch Angle | -5° to 35° | -5° to 35° | -5° to 35° | -10° to 45° | 0° to 60° |
| Total Power | 14.5 kW | 24.75 kW | 45.25 kW | 75 kW | 91 kW |
| Power Supply | 380V 50Hz three phase | 380V 50Hz three phase | 380V 50Hz three phase | 380V 50Hz three phase | 380V 50Hz three phase |
| Blower Motor Power | 11 kW | 18.5 kW | 37 kW | 55 kW | 75 kW |
| Water Pump Motor Power | 3 kW (Multistage centrifugal pump) | 5.5 kW (Multistage centrifugal pump) | 7.5 kW (Multistage centrifugal pump) | 11 kW (Multistage centrifugal pump) | 15 kW (Multistage centrifugal pump) |
| Noise Reduction Technology | Sinusoidal noise reduction | Sinusoidal noise reduction | Sinusoidal noise reduction | Sinusoidal noise reduction | Sinusoidal noise reduction |
| Lifting Mechanism | Hydraulic lifting | Hydraulic lifting | Hydraulic lifting | Hydraulic lifting | Hydraulic lifting |
| Left and Right Rotation Structure | High quality reduction motor | Hydraulic rotation | Hydraulic rotation | Hydraulic rotation | Hydraulic rotation |
| Number of Nozzles | 40 | 58 | 80 | 120 | 120 |
| Dimensions | 2000*1500*1500 mm | 1050*1600*2400 mm | 1400*1600*2500 mm | 2700*2000*2300 mm |
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Dust Challenges in Mining Operations
Mining sites present some of the most complex dust control conditions.
Common dust sources include:
- Drilling and blasting areas
- Crushing and screening plants
- Conveyor transfer points
- Haul roads and loading zones
- Stockpiles of ore and aggregate
Dust generated in these areas is often fine, dry, and easily carried by wind. Traditional watering methods are usually insufficient, as they mainly act on ground dust rather than airborne particles.
Role of Fog Cannon Dust Suppression in Mines
Fog cannon dust suppression focuses on capturing dust particles while they are suspended in the air. By producing fine mist droplets, the fog cannon increases the weight of dust particles and accelerates their settlement.
In mining applications, a dust suppression fog cannon:
- Controls dust at the source rather than after dispersion
- Reduces dust migration across large open areas
- Improves visibility for operators and vehicle drivers
- Supports continuous mining operations without frequent stoppages
This makes fog cannons suitable for both fixed installations and mobile deployment across different mining zones.
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How a Dust Control Fog Cannon Works on Mining Sites?
A dust control fog cannon combines a high-pressure water pump with a powerful fan to project atomized water over long distances. The mist interacts with airborne dust, forming heavier clusters that fall out of the air.
In mines, fog cannons are typically:
- Installed near crushers, screens, or transfer points
- Positioned upwind to maximize dust interception
- Set with adjustable rotation and elevation to follow dust movement
Correct positioning and spray adjustment are critical for achieving effective dust control without excessive water usage.
Key Applications of Dust Control in Mines
Dust suppression fog cannons are commonly used in:
- Open-pit mines for drilling and blasting zones
- Quarry crushing and screening plants
- Coal handling and mineral processing facilities
- Ore stockpile management areas
- Haul road intersections and loading points
In each case, dust control in mines focuses on minimizing airborne dust while maintaining normal production efficiency.
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Practical Considerations for Mining Dust Suppression
Effective fog cannon dust suppression in mining environments depends on operational planning rather than equipment size alone.
Key considerations include:
- Matching spray range to site scale
- Adjusting mist density based on wind conditions
- Coordinating fog cannon operation with active dust-generating processes
- Ensuring reliable water supply and filtration
These factors help maintain consistent dust control performance across changing mining conditions.
Integration into Mine Dust Control Systems
A dust suppression fog cannon is often part of a broader dust control strategy. In mining operations, it may work alongside:
- Localized spray nozzles on crushers
- Road surface dust suppression systems
- Enclosures or wind barriers around processing areas
This integrated approach improves overall dust control efficiency and reduces reliance on any single method.
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dust control in mines drom YG Machinery
Mining operations generate large volumes of airborne dust that are difficult to manage with conventional methods. A properly configured dust suppression fog cannon provides an effective solution for dust control in mines, particularly in open and high-dust environments. By understanding how dust control fog cannons function and where they are most effective, mining operators can implement reliable fog cannon dust suppression strategies that support safety, productivity, and environmental responsibility.





