
Add to Cart
Liquefaction Plant 400TPD LIN / 400TPD LOX YPON-400TPD Liquefaction Plant Liquid Equipment
Specifications:
The followings are the standard products for the Liquefaction Plant YPON series manufactured by our company. For particular product can be calculated and designed according to the actual requirements.
MODEL CONTENTS | YPON-50TPD | YPON-440-1000 | YPON-4500-4500 | YPON-8750-9000 | |
LOX/LN flow | Nm3/h | 1500/1700 | 1100/1250 | 4500/4500 | 8750/9000 |
LOX/LN purity | ppm | Same as the feed gas | Same as the feed gas | Same as the feed gas | Same as the feed gas |
LOX/LN pressure | MPa(G) | ~0.2/0.2 | ~0.2/0.2 | ~0.2/0.2 | ~1.58/1.7 |
LOX/LN Subcooled | K | 3/3 | 88.5/84 | 7/5 | 5/13 |
Typical Product:YPON-400TPD Liquefaction Plant
Output, purity and pressure
| Flow (Nm3/h) | Purity | Pressure MPa(G) | Subcooled (K) |
LOX/LN | 11700/13350 | Same as the feed gas | 0.83/0.9 | 28.4/23 |
Note: 1. All pressures which are not specially defined are the gauge pressures
2. Nm3/h is defined as the volume at standard atmospheric pressure.
3. The liquid output is calculated on the base of data of gas, and the pressure is calculated with 0 meter high at outlet of cold box.
Description:
Under liquid oxygen operating mode, the compressed nitrogen from circulating nitrogen compressor is divided into two streams: one stream goes into main heat exchanger to be cooled, after which it is fed into the high temperature expander where it is expanded, following that it goes out of cold box after being re-warmed in main heat exchanger, and goes back to the inlet place of circulating nitrogen compressor; the other one enters into the main heat exchanger following being boosted in the boosting ends of high temperature expander and low temperature expander to be boosted, part of which is led into the low temperature expander where it is expanded, and then it goes out of cold box after re-warmed in the main heat exchanger, and back to the inlet place of circulating nitrogen compressor; another part is liquefied to liquid nitrogen directly.
The liquid nitrogen is divided into two streams after being subcooled in liquid nitrogen subcooler, one stream goes into the oxygen heat exchanger first, and then goes out of cold box after rewarmed, and back to the inlet of circulation nitrogen compressor; the other stream backflows to the LIN subcooler after being throttled, and goes out of cold box after rewarmed.
The gaseous oxygen is liquefied by liquid nitrogen in the oxygen heat exchanger, and then it is sent out of cold box.
Under the liquid nitrogen operating mode, the compressed nitrogen from the circulation nitrogen compressor is divided into two streams. One flows into high temperature expander to be expanded following being cooled in the main heat exchanger, and then goes out of cold box after being rewarmed in main heat exchanger, and back to the inlet position of circulation nitrogen compressor; the other one enters into the main heat exchanger following being boosted in the boosting ends of high temperature expander and low temperature expander to be boosted, part of which is led into the low temperature expander where it is expanded, and then it goes out of cold box after re-warmed in the main heat exchanger, and back to the inlet place of circulating nitrogen compressor; another part is liquefied to liquid nitrogen directly.
The liquid nitrogen is divided into two streams after being subcooled in liquid nitrogen subcooler, one stream goes into the oxygen heat exchanger first, and then goes out of cold box after rewarmed, and back to the inlet of circulation nitrogen compressor; the other stream backflows to the LIN subcooler after being throttled, and goes out of cold box after rewarmed.
The liquid nitrogen is subcooled in the LIN subcooler, and then sent out of cold box as product liquid nitrogen after being throttled.
Applications:
1. Glass
2. Depth refrigerant
3. Automotive, Ship, Aerospace & Aeronautics Industries
4. Mining Industry
5. Pharmaceutical and biotechnology
6. Petroleum refining
Competitive Advantage:
1. The impeller is a brazed three dimensional shrouded impeller. The shape of blade is precisely milled by means of NC Machining Center imported from Sweden to guarantee the precision of blade shape and the highest running efficiency of expansion turbine.
2. Short time delivery
3. Low Maintenance Cost
4. Successful experience of made many plants
5. Engineers available to service machinery overseas