Windbreak and dust control nets for the mining industry.
Health and safety: Controlling dust emissions actively protects the health of employees from the dangers of inhaling fine dust and other airborne particles. At the same time, the risk to passers-by in neighbouring areas is significantly reduced.
Traffic safety: By avoiding sudden dust clouds, visibility on neighbouring roads and transport routes is ensured, which significantly reduces the risk of accidents.
Environmental protection: Our netting systems prevent the widespread dispersion of potentially harmful dust particles into the surrounding environment and neighbouring ecosystems.
Main areas of application
Outdoor storage areas for bulk materials and raw materials
Transfer points on conveyor belts with increased dust levels
Hoppers and filling stations for material handling
Transport routes and lines for bulk materials
Spoil heaps and landfills
Processing areas with open material flows
Our windbreak nets combine robust materials with optimised permeability to ensure maximum dust containment while minimising wind load on the supporting structures
We offer 2 different fences for the mining category, which differ in their structure and purpose.
Wind guard
Our Wind guard was specially designed for mining environments where the primary focus is on controlling wind currents. The deliberately coarser mesh structure of this net offers the following advantages:
Technical specification
Material: 100% Polyester
Width: 90cm, 150cm
Mesh size: 5-8 mm
Shading (opacity): 50%
UV-stabilised
Wind reduction: 40-60%
Reinforced edging for increased structural integrity
Dust Control
The DustControl Advanced system was developed for mining environments where the precise control of fine dust is a top priority. The significantly finer mesh structure of this net enables:
Technical specification
Material: 100% Polyester
Width: 90cm, 150cm
Mesh size: 0.8-2 mm
Shading (opacity): 30%
Dust retention capacity: up to 95% for particles >PM10
Special surface treatment: prevent dust accumulation
Multi-layer structure: for optimised filter effect