Basic Info.
| Max.Head | >150m | Max.Capacity | >400 L/min |
| Driving Type | Motor | Impeller Number | Single-Stage Pump |
| Working Pressure | Middle Pressure Pump | Influent Type of Impeller | Single Suction Pump |
| Position of Pump Shaft | Horizontal Pump | Pump Casing Combined | Verticaljoint Surface Pump |
| Mounting Height | Suction Centrifugal | Impeller | Closed |
| Usage | Pump, Pumps, Condensate Pump, Circulating Pump | Standard | API610 |
| Temperature | -80~450 Degrees | Pressure | ~40MPa |
| Head | ~3500m | Rotation Speed | 2950~3600r/Min |
| Capacity | 1000m3/H | Transport Package | Plywood Box |
| Specification | 1000.00cm * 2000.00cm * 1000.00cm | Trademark | haishi |
| Origin | Jiangsu, China | HS Code | 8413709990 |
| Production Capacity | 5000 |
Packaging & Delivery
|
Package Size |
1000.00cm * 1000.00cm * 1000.00cm |
| Package Gross Weight | 200.000kg |
Products Description
Multistage Petrochemical Process Pump: Working Principle
Multistage Petrochemical Process Pump: Working Principle
The Multistage Petrochemical Process Pump is a centrifugal pump designed to handle aggressive chemicals and petrochemical fluids, often operating under high-pressure and high-temperature conditions. The pump uses a multistage impeller system to achieve high pressure and flow rates. It is commonly used in various petrochemical processes such as distillation, filtration, and chemical transportation.
How It Works
The basic operation of the multistage petrochemical process pump follows the principle of centrifugal force. It is equipped with multiple impellers (stages) that progressively increase the pressure of the fluid as it moves through the pump. Here's how it works:
- Fluid Intake: The fluid enters the pump through the inlet and is guided into the first impeller (stage).
- First Impeller: The first impeller adds velocity to the fluid, causing it to move toward the pump casing. This increases the kinetic energy of the fluid.
- Pressure Increase: The fluid passes through a diffuser where the velocity is converted into pressure, increasing the fluid's overall pressure.
- Subsequent Impellers: The fluid continues through additional impellers, each stage further increasing the pressure until it reaches the desired level.
- Discharge: Once the fluid has passed through all the stages, it exits the pump at the discharge point with high pressure and flow, ready for use in various petrochemical processes.
Key Features of the Multistage Design
- Multiple Impellers: The multistage design allows for higher pressure output, suitable for high-lift applications.
- High Efficiency: Optimized hydraulic design ensures energy-efficient operation.
- Corrosion Resistance: Constructed with materials that resist corrosion from aggressive petrochemical fluids.
- Durability: Designed for continuous-duty operation, providing long-lasting performance in harsh conditions.
Applications
- Petrochemical industry for transporting chemicals and petrochemical fluids
- Oil refining processes including distillation and filtration
- High-pressure water injection systems for oil recovery
- Chemical transportation in refineries and chemical plants
Conclusion
The Multistage Petrochemical Process Pump offers an effective and reliable solution for handling high-pressure and high-flow applications in petrochemical industries. Its multistage design makes it suitable for a wide range of demanding processes where fluid needs to be transported efficiently and at a consistent pressure.

| Demonstration Of The Type | Range Of Application | Performance Parameter |
| HD5F300-180X8 HD5F: Series code 300: Flow rate (m3/h) 180: Single stage head (m) 8: Series of impeller |
Mainly used for transporting petroleum, refined oil, liquefied petroleum gas, light hydrocarbons, boiler water supply and so on All kinds of clean or containing trace particles, flammable and explosive, toxic media. The typical working conditions are used in the hydrogenation feed pump in the heavy oil hydrogenation unit of each refinery. High pressure coke removal pump in coking and phosphorus removal unit of steel mill and high pressure boiler feed pump for power plant. |
Flow rate: ~ 1000m³/h Lift: ~3500m Speed: 2950~3600r/min Design pressure: ~40MPa Operating temperature: -80ºC~450ºC |


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FAQ
Q: Can your pumps be installed in hazardous gas zones?
A: Yes, we provide ATEX-certified models for explosive gas environments.
Q: What is the maximum delivery head your chemical pumps can achieve?
A: Our multistage designs can reach heads of over 300 meters, depending on model and application.
Q: Can the pump be equipped with a frequency inverter?
A: Yes, we support VFDs for speed control and energy optimization.
Q: Are there pump options for ammonia and caustic soda?
A: Yes, we offer specially selected materials for handling strong alkalis and reactive chemicals.
Q: Do you offer thermal oil circulation pumps?
A: Yes, we manufacture pumps specifically designed for high-temperature heat transfer fluids.
Q: Is it possible to mount pumps on trailers for mobile use?
A: Yes, we can design mobile skid-mounted or trailer-mounted pumping units upon request.
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