China LPG Compressor Factory - Reliable Suppliers for Liquefied Petroleum Gas Transfer and Pressurization Solutions
Large Flow & Cost-Effectiveness
The piston compressor can provide a wide flow range from hundreds to tens of thousands of cubic meters per hour, meeting the needs of large-scale LPG transfer, filling, and process boosting. Its technology is mature, and its procurement and maintenance costs are more economical compared to diaphragm compressors of the same flow rate, making it a preferred choice for large-scale projects.
Mature Skid-Mounted Integration & Adaptability
Piston compressors are easily integrated into a fully skid-mounted package including the main unit, inter-stage coolers, gas-liquid separators, lubrication system, and control panel, saving installation space and time. Through cylinder clearance adjustment and multi-stage compression design, they can adapt to certain fluctuations in suction pressure and gas flow, ensuring stable discharge pressure.
Explosion-Proof & Oil-Free Lubrication
The drive motor and all electrical components exposed to hazardous areas must comply with the Ex d IIB T4 explosion-proof rating. For applications requiring high purity or prohibiting oil contamination, the cylinder should adopt an oil-free lubrication design, utilizing self-lubricating piston rings and packing made from PTFE or carbon composite materials. If oil-lubricated, the compatibility of the lubricating oil with LPG must be ensured, and an efficient oil separation and recovery system must be equipped.
Safety Interlocks & Leakage Control
A comprehensive safety interlock system must be configured, including alarms and automatic shutdown protection for key parameters such as low suction pressure, high discharge pressure, high discharge temperature, low lubricating oil pressure, and cooling water failure. The piston rod packing is critical for preventing external leakage. For LPG media, a nitrogen buffer packing system is typically recommended, introducing low-pressure nitrogen to form a barrier that prevents LPG from leaking outward along the piston rod. Any leaked gas can be routed to a vent system.
Material Compatibility & Structural Safety
Components in contact with LPG, such as cylinders, valves, and piping, should be made of materials resistant to petroleum hydrocarbons. The compressor foundation must be stable, and exposed rotating parts must be equipped with protective guards. In locations such as filling stations, the compressor skid may require crash bollards (guardrails). The system should be pre-configured with nitrogen purge connections for displacing air before startup and purging residual LPG after shutdown.
Z Type
| Piston stroke | 80mm, 95mm |
| Piston force | 10KN~25KN |
| Power | 7.5KW-55KW |
| Cylinder banks | 1/2 |
| Crankshaft speed | 740 rpm, 980 rpm |
| Compression stages | 1/2/3/4 |
| Drive mode | Electric, Diesel, Gas |
V / W Type
| Piston stroke | 92mm to 120mm |
| Piston force | 25KN, 45KN, 65KN |
| Power | 15KW-220KW |
| Cylinder banks | 2/3/4 |
| Crankshaft speed | 740 rpm, 980 rpm |
| Compression stages | 1/2/3/4 |
| Drive mode | Electric, Diesel, Gas |
M Type
| Piston stroke | 92mm~315mm |
| Piston force | 45KN~660KN |
| Power | 160KW-3000KW |
| Cylinder banks | 4 |
| Crankshaft speed | 300rpm~980rpm |
| Compression stages | 1/2/3/4 |
| Drive mode | Electric, Diesel, Gas |
D Type
| Piston stroke | 92mm~315mm |
| Piston force | 25KN~200KN |
| Power | 30KW-1000KW |
| Cylinder banks | 2 |
| Crankshaft speed | 300rpm~980rpm |
| Compression stages | 1/2/3/4 |
| Drive mode | Electric, Diesel, Gas |
| S/N | Model | Flow (Nm³/h) | Inlet Pressure (MPag) | Outlet Pressure (MPag) | Motor Power (kW) |
|---|---|---|---|---|---|
| 1 | ZW-0.4/10-16 | 24 | 1.0 | 1.6 | 5.5 |
| 2 | ZW-0.6/10-16 | 36 | 1.0 | 1.6 | 7.5 |
| 3 | ZW-0.8/10-16 | 48 | 1.0 | 1.6 | 11.0 |
| 4 | ZW-1.1/10-16 | 66 | 1.0 | 1.6 | 15.0 |
| 5 | ZW-1.6/10-16 | 96 | 1.0 | 1.6 | 22.0 |
| 6 | ZW-2/10-16 | 120 | 1.0 | 1.6 | 30.0 |
| 7 | ZW-2.5/10-16 | 150 | 1.0 | 1.6 | 37.0 |
| 8 | ZW-3/10-16 | 180 | 1.0 | 1.6 | 45.0 |
| 9 | ZW-4/10-16 | 240 | 1.0 | 1.6 | 55.0 |
| 10 | ZW-0.4/16-24 | 24 | 1.6 | 2.4 | 5.5 |
| 11 | ZW-0.6/16-24 | 36 | 1.6 | 2.4 | 7.5 |
| 12 | ZW-0.8/16-24 | 48 | 1.6 | 2.4 | 11.0 |
| 13 | ZW-1.1/16-24 | 66 | 1.6 | 2.4 | 15.0 |
| 14 | ZW-1.6/16-24 | 96 | 1.6 | 2.4 | 22.0 |
| 15 | ZW-2/16-24 | 120 | 1.6 | 2.4 | 30.0 |
| 16 | ZW-2.5/16-24 | 150 | 1.6 | 2.4 | 37.0 |
| 17 | ZW-3/16-24 | 180 | 1.6 | 2.4 | 45.0 |
| 18 | ZW-4/16-24 | 240 | 1.6 | 2.4 | 55.0 |
LPG piston compressors offer a wide volume flow range matching large-scale transfer needs, high structural durability, and a highly cost-effective setup. Compared to diaphragm compressors of similar flow capacities, procurement and maintenance costs are significantly lower.
For high-purity applications, an oil-free cylinder design is utilized, incorporating self-lubricating piston rings and packings made of PTFE or carbon composite materials. If oil lubrication is used, high-efficiency oil separation and recovery systems are implemented to ensure purity.
All electrical components and the drive motor exposed to hazardous areas comply with the strict Ex d IIB T4 explosion-proof rating, ensuring safe operation within hazardous locations like LPG terminals and filling stations.
The piston rod packing is the critical seal. A nitrogen buffer packing system is recommended, introducing low-pressure nitrogen to form a positive barrier that prevents LPG from escaping. Any minor leak is safely routed to a dedicated vent system.
The system features integrated automatic shutdowns and alarms for critical operations, including low suction pressure, high discharge pressure, high discharge temperature, low lubricating oil pressure, and cooling water failure.
Depending on the project site conditions, the compressor can be powered by an electric motor, a diesel engine, or a natural gas engine to ensure maximum operational flexibility.


