Hangzhou Hangyang Cryogenic Liquefaction Equipment Co., Ltd

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8750 / 9000 Nm3 / h Liquefaction Unit for Freezing / Chemical synthesis

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8750 / 9000 Nm3 / h Liquefaction Unit for Freezing / Chemical synthesis

China 8750 / 9000 Nm3 / h  Liquefaction Unit for Freezing / Chemical synthesis supplier

Large Image :  8750 / 9000 Nm3 / h Liquefaction Unit for Freezing / Chemical synthesis

Product Details:

Place of Origin: China
Brand Name: HANGYANG
Certification: CE/ASEM/GB
Model Number: YPO

Payment & Shipping Terms:

Minimum Order Quantity: 1 set
Price: Negotiation
Packaging Details: wooden case, nude packing, container
Delivery Time: according to actual requirement
Supply Ability: according to actual requirement
Detailed Product Description
Product Name: YPON-8750/9000Nm3/h Liquefaction Plant Application: Glass, Oil And Gas Field, Machinery & Construction,Metallurgy
Standard: CE/ASEM/GB Service: Engineers Available To Commissioning Service Overseas
Package: Seaworthy Packing

 

Liquefaction Plant 8750/9000Nm3/h YPON-8750/9000Nm3/h Liquefaction Unit

 

Specifications:

 

Standard Products List

 

MODEL

CONTENTS  

YPON-400TPD

YPON-440-1000

YPON-4500-4500

YPON-50TPD

LOX/LN flow

Nm3/h

11700/13350

1100/1250

4500/4500

1500/1700

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)

~0.83/0.9

~0.2/0.2

~0.2/0.2

~0.2/0.2

LOX/LN Subcooled

K

28.4/23

88.5/84

7/5

3/3

 

 

 

Typical Product:YPON-8750/9000Nm3/h Liquefaction Plant

 

Output, purity and pressure

 

 

Flow (Nm3/h)

Purity

Pressure MPa(G)

Subcooled (K)

LOX/LN

8750/9000

Same as the feed gas

1.58/1.6

5/13

 

Note:

  • All pressures which are not specially defined are the gauge pressures
  • Nm3/h is defined as the volume at standard atmospheric pressure.
  • 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:

 

        In liquid oxygen working condition, the supplement nitrogen from nitrogen pipeline mixing with the refluxed gas from liquefier after throttled, and after compressed through circulation nitrogen compressor, it is divided into two streams: one enters main heat exchanger to be cooled, and then it is fed into the high temperature expander where it is expanded, following which it goes out of cold box after being re-warmed in main heat exchanger, and goes back to the inlet place of circulation nitrogen compressor; the other one goes 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; rest part is directly liquefied to liquid nitrogen.

       The liquid nitrogen is divided into two streams after being sub-cooled in liquid nitrogen sub-cooler, one stream goes into the oxygen heat exchanger first, and then goes out of cold box after re-warmed, and back to the inlet of circulation nitrogen compressor; the other stream backflows to the LIN sub-cooler after being throttled, and goes out of cold box after re-warmed.

The gaseous oxygen is liquefied by liquid nitrogen in the oxygen heat exchanger, and then it is sent out of cold box.

        In liquid nitrogen operating mode, he supplement nitrogen from nitrogen pipeline mixing with the refluxed gas from liquefier after throttled, and after compressed through circulation nitrogen compressor, it 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 re-warmed 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 sub-cooled in the LIN sub-cooler, and then sent out of cold box as product liquid nitrogen after being throttled.

 

 

8750 / 9000 Nm3 / h  Liquefaction Unit for Freezing / Chemical synthesis

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Applications:

 

1. Freezing

 

2. Chemical synthesis

 

3. Agriculture

 

4. Microorganism

 

5. Pharmaceutical and biotechnology

 

6. Glassmaking

 

7.Health care

 

8.Papermaking

 

 

Competitive Advantage:

 

1. The expander is constructed integrated assembly and dismantlement can be carried out at normal temperature end for convenience maintenance and inspection.

 

2. Perfect technology R&D system

 

3. Our company’s economic effectiveness is in the lead of the industry in China

 

4. No gas loss and high yield

 

5. Engineers available to commissioning plant overseas

 

6. All gas and liquid plants are optimized to meet customer’s specific site requirements

 

 

 

Contact Details
Hangzhou Hangyang Cryogenic Liquefaction Equipment Co., Ltd

Contact Person: Ms. Lou Yizhen

Send your inquiry directly to us (0 / 3000)