Compressed Air Applications play a vital role in enhancing operational efficiency across diverse industries. Our advanced air technology solutions are tailored to optimize performance in critical areas such as telecommunications, sewage treatment, water purification, and landfill management. Explore how our systems support a wide range of sectors with precision and reliability.
In the field of telecommunications, compressed air applications play a crucial role in efficiently installing fibre optic cables. By using high-velocity airstreams through cable jets or micro jets, fibre cables are seamlessly blown into existing pipelines. This innovative method eliminates the need for expensive digging, significantly reducing installation time and overall project costs.
In sewage treatment plants, compressed air plays a vital role in controlling sewage flow and enhancing the air oxidation process in sewage tanks. This technology helps maintain optimal conditions for effective waste treatment.
In water treatment applications, compressed air is introduced into water systems to prevent stagnation, particularly in fish farms. This process activates water treatment divert valves for additional filtration when contaminants are detected.
In landfill management, compressed air is released into the ground to flush out toxic gases. This method is essential for sour gas cleaning and pumping operations, mitigating environmental hazards and enhancing safety.
Our dedication to advancing compressed air applications ensures improved efficiency, enhanced safety, and long-term environmental sustainability across diverse industries. Get in touch with us today to discover innovative air technology solutions tailored to meet your specific operational needs.
Piping Material Features Comparison |
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Piping Features | Stainless Steel(Type 304L) | Mild Steel | Blue anodized Aluminum Alloy |
Weight (Dia 6inch, Length 6m) | 127.2 | 169.6 | 29.142 |
Anti-Corrosive | Yes | No | Yes(100%) |
Pressure drop (Dia 2 inch Length= 20m, Airflow=3 cubic metres/Minute, Pressure=10 bar) | 0.25 | 0.4 Bar | 0.1 |
Efficient Energy Use | High | Low-moderate | High( Potential Cost savings of 34%) |
Structural Durability | Very Strong | Very Strong | Strong |
High Thermal Endurance | Yes | Yes | Yes |
Installation Ease | Less Difficult | Difficult | Easy(High Flexibility and Modularity) |
Simple Installation | Approx 6 feet length per hour | Approx 6 feet length per hour | Approx 45 feet Length per hour |
Manpower and Work Hours Needed for 2″ Pipe Over 3000 Feet | Approx 600 man-hours/8 men for 2 weeks | Approx 600 man-hours/8 men for 2 weeks | About 100 man-hours with 8 workers, completed in under 2 days |
Annual Charges for Installation, Commissioning & Operation | Approx 3000 dollars | Approx 7820 dollars | Approx 1300 dollars |
Installation Cost Breakdown: Material % / Labor % | 30% / 70% | 25% / 75% | 80% / 20% |
Texture of Surface | 0.03 | 0.05 | 0.001 |
Required Specialized Tools: Welder, Threader, Groove Cutter | Yes | Yes | No |
Quality of Air | High — When needed, these pipe systems comply with ISO 8573-1:2010 air quality standards | Low( Not according to !SO 8573-2010 air quality standards) | High — These pipe systems support compliance with ISO 8573-1:2010 air quality standards when required. |
Cost Rate per Meter | Almost 2 less than Aluminum | 3 Times less than Aluminum | 163.64 Dollars |
Service Life Depends on Environment, Pipe Design, and Grade | 30 years | 40 years | 20 years |
Upfront Installation Cost | Material : 30% Labor:70% | Material : 25% Labor:75% | Material : 80% Labor:20% |
Care and Maintenance | Difficult — Rust buildup under pipes and fittings can reach machinery, requiring weekly preventive maintenance. | Difficult (Accumulation of rust under pipes and fittings which travels to machinery may require preventive maintenance every 3-4 days) | Easy — No rust buildup, with preventive maintenance needed every 4 weeks. |