The stainless steel blast heating regeneration adsorption dryer is designed for compressed air systems that require ultra-dry, oil-free, and energy-efficient air treatment. It is an upgraded version of the micro-gas-consumption blast heat regeneration adsorption dryer, featuring an additional intermediate cooler to improve regeneration efficiency and overall drying performance.
During operation, ambient air is drawn in by a blower and heated by a built-in heater. The heated air then passes through the saturated adsorption tower, desorbing the moisture accumulated in the adsorbent. After the heating stage, the hot regeneration air circulates through the intermediate cooler and the regeneration tower, cooling the tower in a continuous closed-loop cycle.
Because the full regeneration process is completed without consuming compressed air, the system achieves zero compressed air consumption during regeneration, helping reduce energy use and operating costs. By combining TSA (Temperature Swing Adsorption) technology with blower thermal purge regeneration, the dryer delivers reliable moisture removal, stable dew point performance, and efficient long-term operation.
To ensure stable performance and long service life, the stainless steel blast heating regeneration adsorption dryer should be used under the following recommended conditions:
- Applicable fluid: Compressed air, non-corrosive air
- Inlet air flow: 28.5 Nm³/min (1710 Nm³/h)
- Inlet air pressure: Standard 7 bar, range 6–10 bar
- Pressure loss at full load: ≤ 3% of intake pressure
- Inlet air oil content: Oil-free or ≤ 0.1 ppm (mg/m³)
- Inlet air temperature: Standard 10–30℃, range 2–40℃
- Outlet pressure dew point: ≤ -20℃
- Working environment temperature: Standard 35℃, range 2–40℃
- Working cycle (single tower): Approximately 240 minutes, maximum 300 minutes
For the best drying result, the system should be supplied with clean and stable compressed air. Proper pre-filtration and oil removal are recommended to protect the adsorbent, maintain drying efficiency, and ensure consistent outlet air quality.
| Model | Capacity (m³/min) | Gas Connection Pipe | Power (kW) | Dimensions (mm) |
|---|
| HRB-E100 | 13.5 | DN50 | 7.5 | 1390×970×2297 |
| HRB-E120 | 17 | DN65 | 10.2 | 1750×1050×2271 |
| HRB-E150 | 21.5 | DN80 | 11.8 | 1750×1050×2471 |
| HRB-E180 | 25 | DN80 | 14.2 | 1800×1050×2597 |
| HRB-E200 | 28.5 | DN80 | 16.8 | 1900×1100×2454 |
| HRB-E250 | 32 | DN80 | 18.4 | 1920×1260×2600 |
| HRB-E300 | 37 | DN100 | 21.5 | 2175×1340×2750 |
| HRB-E350 | 41.5 | DN100 | 25.9 | 2200×1350×2752 |
| HRB-E400 | 45 | DN100 | 27.5 | 2400×1500×2852 |
| HRB-E450 | 50 | DN100 | 30 | 2540×1670×2938 |
| HRB-E500 | 55 | DN125 | 31.5 | 2650×1700×3138 |
| HRB-E550 | 60 | DN125 | 33.5 | 2700×1840×3150 |
| HRB-E600 | 65 | DN125 | 36.3 | 2750×1840×2888 |
| HRB-E700 | 75 | DN125 | 41.1 | 2750×1840×2888 |
| HRB-E800 | 85 | DN125 | 47.8 | 3100×1900×3050 |
| HRB-E900 | 95 | DN150 | 52.6 | 3250×2100×2950 |
| HRB-E1000 | 110 | DN150 | 59 | 3250×2100×2950 |
| HRB-E1200 | 120 | DN150 | 63.8 | 3500×2200×3341 |
| HRB-E1400 | 140 | Dn200 | 74.1 | 3700×2400×3420 |
| HRB-E1600 | 160 | DN200 | 89 | 3900×2420×3500 |
| HRB-E1800 | 180 | DN200 | 98.5 | 4100×2200×3050 |
| HRB-E2100 | 210 | DN200 | 110.5 | 4200×2835×3150 |
| HRB-E2600 | 260 | DN250 | 136.4 | 5200×2500×3300 |
Note:For air volumes above 260 m³/min or special specifications (materials, temperature, or pressure), please contact our company or authorized dealers. Data is for reference only and may change without prior notice.
In India’s hot climate, seasonal monsoon humidity, and demanding industrial environments, compressed air systems often require not only reliable moisture removal, but also better hygiene, corrosion resistance, and lower long-term operating cost. The stainless steel blast heating regeneration adsorption dryer is designed for clean-process and large-scale compressed air systems that need stable low-dew-point air, oil-free air quality support, and zero compressed air consumption during regeneration. With stainless steel construction, blower-heated regeneration, and an intermediate cooler for improved regeneration efficiency, it is well suited for Indian users operating in moisture-sensitive and cleanliness-focused production environments.
Typical Applications
- Food and beverage processing, filling, and packaging
- Pharmaceutical manufacturing and packaging support
- Electronics and precision manufacturing
- Chemical processing environments requiring better corrosion resistance
- Large industrial compressed air systems in clean-process plants
- Central utility air systems for continuous-duty production facilities
Why It Fits Indian Working Conditions
- Helps control moisture in hot and humid operating conditions, especially during monsoon seasons
- Stainless steel construction supports easier cleaning and better corrosion resistance than standard carbon steel equipment
- Zero compressed air consumption during regeneration improves efficiency in large plant air systems
- Suitable for plants where compressed air quality, hygienic design, and long-term operating economy are all important
- Works well for continuous-duty industrial applications with stable drying and low purge loss
Application Note
For the India page, this model is best positioned as a stainless steel, energy-efficient low-dew-point drying solution for industries where hygiene, corrosion resistance, and reliable long-term operation matter more than a basic standard dryer can offer. It is especially suitable for food processing, pharmaceutical production, electronics manufacturing, chemical processing, and large clean-process utility air systems in India.
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