Reliable Design
Patented Process of RISHENG;
Optimized Ceramic Supports at the Adsorption Tower Base
The high - quality Supportive Ceramic Balls placed at the bottom of the adsorption tower serve a crucial function. They facilitate an even distribution of the air - flow within the tower. This uniform air - flow not only shields the desiccant from direct impact and potential soaking but also significantly extends its service life. In combination with a uniquely engineered carbon - steel flow distributor, the pressure loss during the air - drying process is substantially minimized.
Premium - Grade Desiccant for Superior Dew Point
The specially formulated high - performance desiccant used in the air dryer is designed to achieve the optimal dew point. Through advanced chemical composition and physical structure design, it can effectively adsorb moisture from the compressed air, providing dry air that meets the strictest industrial requirements.
Renowned Blower with Reliable Operation
The air dryer is equipped with a well - known brand blower. This blower is celebrated for its reliable performance and low energy consumption. Its advanced design and high - quality components ensure stable operation over long periods. With efficient air - moving capabilities, it can maintain the required air - flow rate in the system while consuming minimal energy, reducing the overall operating cost of the air dryer.
Durable Pneumatic Valves with Enhanced Performance
The pneumatic valves in the air dryer are crafted from special materials with outstanding thermal stability. By adopting double - activate solenoid valves, the reliability and service life of the valves are greatly enhanced. These valves can withstand high - temperature and high - pressure environments without significant performance degradation.
High - Efficiency Filtration for Pneumatic Valves
As a standard feature, the air dryer comes with a high - efficiency oil - removed and dust - removed filter for the pneumatic valves. This filter effectively removes oil mist and dust particles from the compressed air before it reaches the valves. By preventing these contaminants from entering the valve system, it protects the valves from damage and blockages, ensuring their long - term reliable operation and reducing maintenance requirements.
Sturdy Pneumatic Piping with Quality Material
The pneumatic piping line in the air dryer is made of 316L stainless steel as a standard configuration. This high - grade stainless steel offers excellent corrosion resistance, ensuring the integrity of the piping system even in harsh industrial environments. It can withstand the pressure and chemical exposure associated with the compressed air, providing a long - lasting and reliable connection for the various components of the air dryer.
Various control options
Standard configuration is using reliable PLC controller.
Optional Siemens and ABB brand PLC or touch screen and etc.
We can meet various customer requirements for communication, connecting RS485 I/O , Profibus or Modbus to Ethernet.
Energy-saving
LDCS-Load Dependent Control System ensure the case that performance is best and at the meantime to control the purge air loss accurately , compared with fixed cycle time control type ,LDCS could save at least 8% comprehensive energy consumption.
DPOS-Dew Point Operation System can delay adsorption time under unstable load, DPOS could save at least 75% comprehensive energy consumption.
(LDCS: Load Dependent Control System)
(DPOS: Dew Point Operation System)
Technical Specification of RSXB-150~RSXB-2000 Series Blower Purge Regeneration Compressed Air Dryer
| Model | Air | Capacity | Installed | Demension mm | Weight | Recommended | Recommended | |||
| Connection | m³/min | CFM | Power (kW) | L | W | H | (kg) | Pre-Filter Model | After-Filter Model | |
| RSXB-150 | DN50 | 15 | 530 | 11.4 | 1602 | 926 | 2324 | 1250 | RSG-AA-0330G/V2 | RSG-AR-0330G/V2 |
| RSXB-180 | DN65 | 18 | 636 | 20.5 | 1899 | 1100 | 2284 | 1400 | RSG-AA-0330G/V2 | RSG-AR-0330G/V2 |
| RSXB-220 | DN65 | 22 | 777 | 20.5 | 1959 | 1130 | 2458 | 1530 | RSG-AA-0430G/V2 | RSG-AR-0430G/V2 |
| RSXB-250 | DN65 | 25 | 883 | 20.5 | 2009 | 1110 | 2559 | 1715 | RSG-AA-0430G/V2 | RSG-AR-0430G/V2 |
| RSXB-330 | DN80 | 33 | 1165 | 23.5 | 2083 | 1212 | 2569 | 2100 | RSG-AA-0620G/V2 | RSG-AR-0620G/V2 |
| RSXB-440 | DN100 | 44 | 1554 | 34.5 | 2750 | 1274 | 2613 | 2690 | RSG-AA-0830F/V2 | RSG-AR-0830F/V2 |
| RSXB-500 | DN100 | 50 | 1766 | 42 | 2835 | 1284 | 2693 | 2980 | RSG-AA-1000F/V2 | RSG-AR-1000F/V2 |
| RSXB-600 | DN100 | 60 | 2119 | 42 | 2865 | 1341 | 2648 | 3390 | RSG-AA-1000F/V2 | RSG-AR-1000F/V2 |
| RSXB-700 | DN125 | 70 | 2472 | 58 | 2965 | 1691 | 2744 | 4190 | RSG-AA-1200F/V2 | RSG-AR-1200F/V2 |
| RSXB-800 | DN125 | 80 | 2825 | 58 | 3103 | 1617 | 2869 | 4600 | RSG-AA-1300F/V2 | RSG-AR-1300F/V2 |
| RSXB-900 | DN150 | 90 | 3178 | 86.5 | 3900 | 2189 | 2775 | 5800 | RSG-AA-1950F/V2 | RSG-AR-1950F/V2 |
| RSXB-1000 | DN150 | 100 | 3531 | 86.5 | 4230 | 2194 | 2872 | 6300 | RSG-AA-1950F/V2 | RSG-AR-1950F/V2 |
| RSXB-1200 | DN150 | 120 | 4237 | 107 | 4400 | 2204 | 2855 | 6800 | RSG-AA-1950F/V2 | RSG-AR-1950F/V2 |
| RSXB-1500 | DN200 | 150 | 5297 | 130 | 5016 | 2503 | 2947 | 9200 | RSG-AA-2500F/V2 | RSG-AR-2500F/V2 |
| RSXB-2000 | DN200 | 200 | 7062 | 165 | 5516 | 2518 | 3077 | 11700 | RSG-AA-3250F/V2 | RSG-AR-3250F/V2 |
|
Rated Conditions |
Working Range |
Avaliable |
![]() |
|
Working pressure: 0.7MPag / 100psig |
Max. working pressure: 1.0MPag / 145psig |
Higher pressure above 1.0MPag / 145psig |
|
|
Inlet temp: 38℃ / 100℉ |
Max. inlet temperature: 45℃ / 113℉ |
Zero purge from model RSXB-180 |
|
|
Ambient temp: 38 ℃ / 100℉ |
Max. ambient temperature: 40℃ / 104℉ |
PDP -20℃ / -4℉ and -70℃ / -100℉ |
|
|
PDP: -40℃ / -40℉ |
Higher capacity |
||
|
Stainess steel vessel or piping |
|||
|
GB, ASME, PED, etc. |
Correction Factors
Actual Capacity (m³/min) = Nominal Capacity × KA × KB
| Working Pressure (KA) | Mpag | 0.5 | 0.6 | 0.7 | 0.8 | 0.9 | 1 |
| Psig | 73 | 87 | 100 | 116 | 131 | 145 | |
| CFP | 0.75 | 0.87 | 1 | 1.13 | 1.25 | 1.37 |
| Inlet Temperature (KB) | ℃ | 35 | 38 | 40 | 42 | 45 |
| ℉ | 95 | 100 | 104 | 108 | 113 | |
| CFT | 1.18 | 1 | 0.9 | 0.81 | 0.69 |


