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Industrial nitrogen PSA Nitrogen Plant Energy saving unit

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Industrial nitrogen PSA Nitrogen Plant Energy saving unit

Country/Region china
City & Province suzhou jiangsu
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Product Details

Industrial PSA Nitrogen Plant,  Energy saving

 

PSA Nitrogen Generator Principle:

 

When the process adopts lifting air, oxygen and nitrogen have different diffusion rate and absorptive capacity to separate oxygen from nitrogen on carbon molecular sieve. When air is compressed to 0.8~1.0MPa, the air source enters in pressure-swing absorption tower for separation after being purified through the dry and oil-water separation process (filter). Oxygen molecules are diffused and absorbed in a carbon molecular sieve under pressure. Nonabsorbed nitrogen is discharged from the outlet of adsorption tower. Oxygen is desorbed, discharged and purged in an adsorption tower under depressurization. Moreover, adsorbents can be recycled.

 

What is PSA Technology?

 

PSA Technology is a very mature technology and has been around since the 1970s. In fact, thousands 

of PSA plants are serving customers worldwide. We have supplied our PSA plants to customers in over 

56 countries.
We explain the PSA technology below using a simple process diagram.


Air is composed of 78% Nitrogen and 21% Oxygen. PSA Nitrogen generation technology works on the 

principle of air separation by adsorbing Oxygen and separating Nitrogen.

The pressure Swing Adsorption (PSA Nitrogen) process comprises 2 vessels filled with Carbon Molecular 

Sieves (CMS). (see image below for detail of vessels).

Step 1: Adsorption
Pre-filtered compressed air is passed through one CMS-filled vessel. Oxygen is adsorbed by the CMS 

and Nitrogen comes out as the product gas. After some time of operation, the CMS inside this vessel 'gets saturated with Oxygen and can no longer adsorb.
Step 2: Desorption
Upon saturation of the CMS in the vessel, the process switches nitrogen generation to the other vessel, 

while 

allowing the saturated bed starts the process of desorption and regeneration. The waste gas (oxygen, 

carbon

 dioxide, etc.) is discharged into the atmosphere.
Step 3: Regeneration
In order to regenerate the CMS in the vessel, part of the Nitrogen produced by the other tower is 

purged into this tower. This allows for quick regeneration of the CMS and to make it available for 

production in the next cycle.

The cyclical nature of the process between the two vessels ensures the continuous production of pure 

Nitrogen.

 

 

Specifications:

 

No

Model

Capacity(Nm3/h)

Purity

Power(KW)

Overall size(mm)

1

2

3

4

PN-3-39

PN-5-29

PN-5-295

PN-8-295

3

5

5

8

99.9%

99.5%

99%

95%

 

 

0.5

 

 

1800*1400*1500

5

6

7

8

PN-5-49

PN-8-39

PN-12-295

PN-15-29

5

8

12

15

99.99%

99.9%

99.5%

99%

 

 

0.5

 

 

1800*1400*1800

9

10

11

12

PN-10-49

PN-15-39

PN-25-295

PN-30-39

10

15

25

30

99.99%

99.9%

99.5%

99%

 

 

0.5

 

 

2000*1700*2250

13

14

15

16

PN-15-49

PN-22-39

PN-35-295

PN-45-29

15

22

35

45

99.99%

99.9%

99.5%

99%

0.5

2100*1800*2200

17

18

19

20

PN-20-49

PN-30-39

PN-50-295

PN-60-29

20

30

50

60

99.99%

99.9%

99.5%

99%

0.5

2200*1800*2200

21

22

23

24

PN-30-49

PN-45-39

PN-75-295

PN-88-29

30

45

75

88

99.99%

99.9%

99.5%

99%

0.5

2400*1900*2200

25

26

27

28

PN-40-49

PN-60-39

PN-100-295

PN-120-29

40

60

100

120

99.99%

99.9%

99.5%

99%

0.5

2500*2100*2500

29

30

31

32

PN-50-49

PN-70-39

PN-120-295

PN-140-29

50

70

120

140

99.99%

99.9%

99.5%

99%

 

 

0.5

 

 

2600*2200*2850

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Note:More news please free to contact Since Gas System Co.,Ltd or send email to us directly

 

 

PSA Nitrogen Generator Technical parameter :

 

Resource: Air                                      

Pressure:5-10 bar 

Pressure dew point:≤10degree 

Oil content ≤0.003mg/m3 

Air -change with the Nitrogen& Oxygen 

 

Product nitrogen 

Pressure:≤9bar

Normal pressure dew point:≤-40degree 

Purity:95%-99.9995%

Nitrogen capacity :5-5000Nm3/H 
During the last 10 years,about 98% old customers firmly choose SINCE 

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