The unloading capacity is calculated based on the working conditions: inlet pressure 1.6 MPa, discharge pressure 2.4 MPa, inlet temperature 40℃, and liquid density of liquid ammonia 729 kg/m³. The unloading capacity will change if the working conditions vary, and the data is for reference only.
Chemical
Liquid Ammonia Loading and Unloading Compressors
Product Description:
Detailed description
Inlet Pressure: ≤1.6 MPa
Discharge Pressure: ≤2.4 MPa
Maximum Pressure Difference: 0.8 MPa
Maximum Instantaneous Pressure Ratio: ≤4
Cooling Mode: Air Cooling
The unloading capacity is calculated based on the working conditions: inlet pressure 1.6 MPa, discharge pressure 2.4 MPa, inlet temperature 40℃, and liquid density of liquid ammonia 729 kg/m³. The unloading capacity will change if the working conditions vary, and the data is for reference only.
Main Technical Parameters of Liquid Ammonia Loading and Unloading Compressors :
|
No. |
Model |
Motor Power(KW) |
Overall Dimensions(L×W×H)mm |
Loading /unloading capacity(t/h) |
|
1 |
ZW-0.6/16-24 |
15 |
~1100×700×900 |
~17.5 |
|
2 |
ZW-0.8/16-24 |
18.5 |
~1100×700×900 |
~23 |
|
3 |
ZW-1.0/16-24 |
22 |
~1100x700x900 |
~29 |
|
4 |
ZW-1.5/16-24 |
30 |
~1400x900x1180 |
~43 |
|
5 |
ZW-2.0/16-24 |
37 |
~1400×900×1180 |
~58 |
|
6 |
ZW-2.5/16-24 |
45 |
~1400x900x1180 |
~73 |
Working principle of four-way valve
When the four-way valve is in the position shown in Figure a, end A is the intake, and gas flows from A to B, through the connecting pipe, intake filter assembly, compressor intake pipe, compressor, compressor exhaust pipe, and end D to end C, which is the exhaust end. When the four-way valve is in the position shown in Figure b, end C is the intake, and gas flows from C to B, through the connecting pipe, intake filter assembly, compressor intake pipe, compressor, compressor exhaust pipe, and end D to end A, which is the exhaust end.

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Liquid Ammonia Loading & Unloading Compressors | Application Scenarios
Liquid ammonia loading/unloading for tank trucks, rail tank cars at chemical terminals and storage depots. Vapor pressure boosting & gas-phase balancing of liquid ammonia storage tanks to accelerate liquid transfer. Ammonia medium transportation and pressure transmission in fertilizer, chemical and refrigeration factories. Tail gas recovery & ammonia vapor recycling to reduce emission loss and improve utilization rate. Pipeline pressurization for liquid ammonia delivery between production workshops and tank farms. Auxiliary pressurization for ammonia filling, intermediate batching and refrigeration system charging.
