Industry

Reduce dust levels significantly and save up to 40% on heating consumption in the winter in the industrial hall.

Industry

eAIR FILTERS

eAIR electrostatic filters remove virtually all airborne particles down to 0.1 microns, effectively capturing dust, ultrafine particles, mould spores, smoke, vehicle emissions, cooking fumes, pollen, bacteria, and viruses. This provides significant benefits in industrial facilities where dust, fumes, and airborne contaminants can negatively impact indoor air quality and employee comfort.

By reducing airborne particulate pollution, eAIR filters help create a cleaner and healthier working environment, supporting employee well-being while reducing the accumulation of dust on equipment, surfaces, and production areas.

Industry

eAIR FANS

High Volume Low Speed (HVLS) fans ensure homogeneous air distribution throughout industrial buildings, eliminating temperature stratification and maintaining the desired temperature at floor level with significantly lower heating demand.

By recirculating warm air trapped beneath the ceiling, eAIR HVLS fans reduce heat loss through the roof, resulting in heating cost savings of up to 40% during the winter season. Lower ceiling temperatures can also help minimize the risk of condensation.

During the summer months, eAIR fans increase air movement within the occupied zone, improving thermal comfort and making employees feel up to 10°C cooler. This can substantially reduce the need for air conditioning and contribute to lower energy costs year-round.

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Health benefits

More health for employees means fewer sick days and increased production.

eAIR FILTERS

Removes Airborne Particulates

Scientific studies have demonstrated that electrostatic filtration removes airborne particulate matter with exceptional efficiency, capturing up to 99% of particles. This includes PM10, PM2.5, and ultrafine particles down to PM0.1, helping to create a cleaner and healthier industrial environment.

Effective Dust Removal

Electrostatic filters are highly effective at removing dust from the air. Unlike passive filtration systems, airborne dust is actively captured and retained within the reusable filter cartridge rather than settling on walls, machinery, and production equipment, contributing to cleaner facilities and reduced cleaning requirements.

Reduces Airborne Bacteria

Electrostatic filtration technology has been shown to effectively reduce airborne bacteria and is widely used in applications where maintaining high indoor air quality is critical.

Reduces Airborne Viruses

Electrostatic filters capture particles well below 100 nanometres and studies have demonstrated their ability to reduce airborne viruses, including influenza viruses, thereby contributing to improved indoor air quality in industrial settings.

Removes Harmful Gases

eAIR electrostatic filters can be equipped with an activated carbon stage to remove volatile organic compounds (VOCs), odours, and gaseous pollutants generated by industrial processes.

Optional Negative Ionization

eAIR filters are available with an optional negative ion generator, designed to enhance perceived air freshness and further improve indoor environmental quality.

eAIR FANS

Improved Summer Comfort

HVLS fans increase air movement within the occupied zone, improving thermal comfort and making employees feel up to 10°C cooler during warmer periods. This creates a more comfortable and productive working environment.

Enhanced Winter Comfort

Many industrial activities take place in older buildings where heating large volumes of air can be costly and inefficient. eAIR HVLS fans recirculate warm air accumulated beneath the ceiling, increasing floor-level temperatures and improving comfort for employees while reducing heating costs.

Ultra-Quiet Operation

Utilizing advanced permanent magnet motor technology, eAIR fans operate at exceptionally low noise levels, providing effective air movement without the disturbance associated with conventional industrial fans.

Reduced Moisture and Condensation

High air circulation rates accelerate the evaporation of moisture from walls and surfaces, helping to dry condensation-prone areas. This can reduce the risk of slippery floors, minimize condensation issues, and help prevent conditions that may promote mould growth.

Economic benefits

eAIR offers an alternative and a supplement to classic ventilation systems - with significant savings in installation and operation.

eAIR FILTERS

Energy Efficient

Electrostatic filters consume significantly less energy than conventional HEPA filtration systems. Due to their higher pressure drop, HEPA filters require more powerful fans to maintain airflow, resulting in increased energy consumption and often more complex and costly installations. eAIR ESP technology delivers high filtration efficiency with minimal energy demand.

Minimal Maintenance

eAIR electrostatic filters are designed for reliable, long-term operation and require only minimal maintenance, helping to reduce service costs and operational downtime.

No Capital Installation Costs

Compact and self-contained, eAIR electrostatic filters require no ductwork or major infrastructure modifications. They can be installed virtually anywhere with access to a standard power supply, minimizing upfront investment costs.

Increased Air Cleaning Capacity

eAIR electrostatic filters are equipped with integrated fans that actively draw contaminated air through the filtration system. This significantly increases air treatment capacity and overall filtration efficiency compared to passive filtration systems.

Reusable Filters

eAIR electrostatic filters utilize reusable filter cartridges that can simply be cleaned with water and mild detergent and returned to service, eliminating the need for frequent replacement of disposable filters.

eAIR FANS

Reduced Heating Costs

eAIR HVLS fans can reduce heating costs by up to 40% during the winter season by recirculating warm air trapped beneath the ceiling back to floor level, improving comfort while lowering energy consumption.

Lower Cooling Costs

During warmer periods, eAIR fans increase air movement and improve thermal comfort, making occupants feel up to 10°C cooler. This can significantly reduce reliance on air conditioning systems and contribute to lower electricity costs.

Energy-Efficient Technology

eAIR fans are powered by Permanent Magnet Synchronous Motors (PMSM) with direct-drive technology. By eliminating traditional reduction gearboxes, energy losses are minimized, resulting in exceptionally high operating efficiency.

Highly Effective Ventilation

A single eAIR HVLS fan can provide air movement comparable to numerous conventional fans while operating more quietly and efficiently. The large-volume, low-velocity airflow creates a comfortable indoor climate with lower installation and maintenance costs.

Simple Installation

eAIR HVLS fans are easy and cost-effective to install and can serve as an economical alternative or supplement to conventional air conditioning systems.

Maintenance-Free Operation

Designed for long-term reliability, eAIR HVLS fans require virtually no maintenance, even in demanding or outdoor environments. The motor is backed by a 10-year warranty, providing peace of mind and reducing lifecycle costs.

Sustainability Benefits

Reduce fossil fuel use, lower CO2 levels and eliminate particulate pollution

eAIR FILTERS

Reduces Airborne Particulate Pollution

Scientific studies have demonstrated that electrostatic filtration can remove airborne particulate matter with high efficiency, capturing up to 99% of particles. This includes PM10, PM2.5, and ultrafine particles down to approximately 100 nm, helping to significantly improve indoor air quality.

Reduces Dust Levels

Electrostatic filtration is highly effective at reducing airborne dust concentrations, contributing to cleaner indoor environments and reduced dust accumulation on surfaces, machinery, and infrastructure.

Reduces Airborne Bacteria

Electrostatic filtration has been shown to reduce airborne bacterial concentrations and is widely used in environments where maintaining high indoor air quality is important.

Increased Air Cleaning Capacity

eAIR electrostatic filters are equipped with integrated fans that actively draw air through the system, significantly increasing air treatment capacity and overall efficiency compared to passive filtration solutions.

Reusable Filters

eAIR electrostatic filters utilize reusable filter cartridges that can be cleaned with water and mild detergent, reducing waste and lowering operational costs.

eAIR FANS

Reduces Airborne Pollution

Lower energy consumption for heating reduces reliance on fossil fuels, contributing to lower emissions and reduced particulate pollution.

Energy Efficient Operation

eAIR HVLS fans are A+ energy rated and designed for exceptionally low power consumption.

Lower CO₂ Emissions

Reduced energy demand directly translates into lower CO₂ emissions, supporting more sustainable building operations.

Highly Efficient Air Distribution

A single HVLS fan can provide air movement comparable to multiple conventional fans, improving air circulation in large spaces with lower energy use.

Improved Indoor Climate

Enhanced air circulation helps reduce temperature stratification, improve perceived comfort, and limit condensation buildup, contributing to a more stable and comfortable indoor environment.

Optimized Working Conditions

Research shows that optimal productivity in industrial environments is typically achieved at 18–21°C. By improving air distribution and reducing heat stratification, HVLS fans can help maintain more stable working conditions and improve thermal comfort in large facilities.

Industry

eAIR FILTERS specs

Dimensions:

From 400 x 450 x 970 mm to 400 x 450 x 2020 mm

Airflow

From 1700 m³/h to 5100 m³/h

Power Consumption

125 W to 255 W

Filtration Degree​

PM2.5 – 99% constant 

Installation

Ceiling, wall, floor (stand)

Industry

eAIR FANS specs

Dimensions:

From 3.15m to 7.15m diameter

Coverage Area

From 314 m² to 1,300 m²

Noise Level

< 38dB

Power Consumption

190 W to 840 W

Airflow Capacity

From 5,600 m³/min to 14,900 m³/min