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HIC with its foreign and local equipment providers believe that quality products and services are essential for the sustainability of its operation and success of its clients.
The FST product portfolio of adsorption dryers and the associated service package is virtually limitless.
Starting with heatless desiccant dryers at the small, compact sizes with aluminum to 82 m³ / h, on container versions with welded steel containers up to 6,300 m³ / h to uppercase or project dryers with more than 30,000 m³ / h, for operating pressures up to 350 bar and with pressure dew points From -25 ° C to -70 ° C.
Still too small? Do you need higher volume flows or higher operating pressures?
No problem - our customer-specific solutions complete the product offer for every type of application.
In addition to cold-regenerating adsorption dryers, we offer a variety of heat-regenerative adsorption dryers for an energetically optimized customer solution at higher volume flows. In the area of hot-regenerating adsorption dryers, we offer the possibility of integrating existing, customer-oriented resources, such as hot steam or cooling water, with the potential for enormous energy savings and thus drastically reduced total operating costs.
Activated carbon oil adsorber, also almost unlimited in size and performance, and (non-regenerable) end position dryers for very small quantities of compressed air complete the product range.
All adsorption dryers come from our own development and manufacture and offer
• Maximum reliability
• Lowest Total Cost
- quality, performance stable and long desiccant beds
- energy efficient regeneration procedures and operating modes
- low differential pressure
- low maintenance costs
• Robust design and long life
• Easy maintenance
• Extensive option possibilities
All adsorption dryers are equipped with state-of-the-art, powerful and user-friendly controls, which ensure energy-saving operation of the dryers. Versatile interfaces and extended control possibilities through the integration of external devices allow an optimal integration into the compressed air system.