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40Nm³/h 93% Purity PSA Oxygen Generator for Mine Mining Pressure Swing Adsorption Oxygen Plant

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40Nm³/h 93% Purity PSA Oxygen Generator for Mine Mining Pressure Swing Adsorption Oxygen Plant

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Brand Name :GNEE
Certification :SGS
Place of Origin :CHINA
MOQ :≥1sets
Payment Terms :MoneyGram,Western Union,T/T,D/P,D/A,L/C
Supply Ability :25 every month
Packaging Details :Wooden Box / Outer shell packaging / Cylindrical packaging / Airbag packaging/nude packing/Sea or land transportation
Oxygen Producing Method :PSA Pressure Swing Adsorption
Energy Consumption :0.3 - 0.8 kW/Nm3
Transport Package :Wooden Box
Filling Pressure :150Bar or 200 Bar
Noiselevel :<65 dB
Oxygen Output :1~200Nm3/h
Weight :Varies by model, typically 500-2000 kg
Oxygen Concentration :93% ±3%
Keyword :PSA Oxygen Generator
Outlet Capacity :3-10 Nm3/h
Powerconsumption :Varies by model, typically 3-10 kW
Warranty :1 years
Sample :Available
Working Principle :Pressure Swing Adsorption
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Product Description

Mine mining, especially underground operations, is often accompanied by harsh environments such as high dust, high humidity, and potential gas accumulation. Once oxygen deficiency occurs, it will directly threaten the life safety of miners and the smooth progress of production. The **psa oxygen generator** (Pressure Swing Adsorption Oxygen Generator), as a core **Industrial Oxygen Generator**, relies on **psa technology for oxygen generation** to separate oxygen from air through the selective adsorption of molecular sieves. It has the advantages of fast start-up, stable operation, and no need for chemical raw materials. Compared with traditional bottled oxygen supply, it avoids the risks of difficult transportation and limited storage in mines. This 40Nm³/h 93% purity **pressure swing adsorption oxygen plant** is specially optimized for mine mining scenarios, with strong environmental adaptability and energy-saving performance, becoming a "life support" for mine safe production.

Core Parameter

90%

93%

APPROX. WEIGHT AND DIMENSIONS

SCFH

NM3/HR

SCFH

NM3/HR

H

W

L

WEIGHT

Inch

Inch

Inch

Lbs.

73

1.92

65

1.71

86

36

30

720

111

2.93

100

2.62

87

36

37

780

164

4.31

147

3.86

87

42

48

1728

207

5.44

185

4.86

93

42

48

1927

311

8.19

278

7.32

103

46

48

2630

414

10.89

371

9.74

106

50

53

4892

516

13.57

461

12.13

110

52

58

3851

724

19.03

647

17.02

97

54

60

4592

1237

32.52

1106

29.10

121

72

72

7576

1641

43.15

1468

38.60

116

74

88

9370

2107

55.40

1885

49.56

137

74

88

10882

2521

66.28

2255

59.29

135

84

112

15238

2918

76.72

2610

68.63

127

90

112

15602

3706

97.45

3315

87.18

147

90

112

16699

4101

107.83

3668

96.46

121

120

156

19988

4473

117.63

4002

105.23

127

120

156

20791

5033

132.33

4502

118.38

184

120

156

21774


40Nm³/h 93% Purity PSA Oxygen Generator for Mine Mining Pressure Swing Adsorption Oxygen Plant

40Nm³/h 93% Purity PSA Oxygen Generator for Mine Mining Pressure Swing Adsorption Oxygen Plant

40Nm³/h 93% Purity PSA Oxygen Generator for Mine Mining Pressure Swing Adsorption Oxygen Plant

1. Why is the **psa oxygen plant** the Core Equipment for Mine Mining Oxygen Supply?

Mine mining has strict requirements for oxygen supply equipment: first, it must be reliable, and cannot fail under harsh conditions; second, it must be flexible, and can be quickly moved and started; third, it must be economical, and reduce the comprehensive cost of oxygen supply. The **psa oxygen plant** perfectly meets these requirements. Compared with bottled oxygen, it can produce oxygen continuously, eliminating the need for frequent transportation and replacement of oxygen bottles in narrow mine tunnels, and reducing the labor intensity of workers. Compared with the **vpsa oxygen generator** (Vacuum Pressure Swing Adsorption Oxygen Generator), the 40Nm³/h PSA oxygen plant has a smaller volume and lower initial investment, which is more suitable for the oxygen demand scale of medium-sized mines. In addition, its physical oxygen generation method avoids the potential safety hazards of chemical oxygen generation, and the 93% oxygen purity can accurately match the oxygen demand of underground miners, avoiding the waste of high-purity oxygen.

Comparison Between **psa oxygen generator** and **vsa oxygen generator** in Mine Scenarios

In industrial oxygen generation equipment, **psa oxygen generator** and **vsa oxygen generator** (Vacuum Swing Adsorption Oxygen Generator) are both common types, but their applicability in mine scenarios is quite different. The **psa oxygen generator** adopts pressure swing adsorption, which has the advantages of fast start-up, small footprint and flexible operation, and is suitable for medium and small mines with fluctuating oxygen demand. The 40Nm³/h model can adjust the output according to the number of underground workers, avoiding energy waste. The **vsa oxygen generator** uses vacuum swing adsorption, which has higher oxygen production efficiency and lower energy consumption, but the equipment volume is larger, the weight is heavier, and it is difficult to move in narrow mine tunnels, which is more suitable for large-scale open-pit mines or fixed oxygen supply stations. In addition, the **psa system for oxygen** of the PSA oxygen generator has simpler maintenance, and mine maintenance personnel can complete daily inspections and filter cleaning after simple training, while the VSA oxygen generator requires professional technicians to maintain, which increases the maintenance cost of mining enterprises.

Key Points for Selecting **psa oxygen generator manufacturers** for Mine Mining

The quality of the PSA oxygen plant is directly related to the life safety of miners, so mining enterprises must choose formal and professional **psa oxygen generator manufacturers**. First, check whether the manufacturer has the "Coal Mine Safety Equipment Certification" to ensure that the equipment meets the mine safety standards. Second, pay attention to the manufacturer's after-sales service capabilities, and require on-site maintenance support within 4 hours in mine-concentrated areas to avoid long-term oxygen supply interruption caused by equipment failures. Third, prioritize manufacturers with mine application cases, such as those who have provided equipment for large coal mines, because their products are more in line with the actual needs of mine mining. In addition, it is necessary to confirm whether the manufacturer can provide customized services, such as adjusting the equipment size and power according to the mine tunnel width and power supply capacity, to ensure the perfect adaptation of the equipment.

Conclusion

The 40Nm³/h 93% purity **psa oxygen plant** has become the preferred oxygen supply equipment for mine mining with its reliable performance, energy-saving advantages and strong environmental adaptability. It relies on mature **pressure swing adsorption for oxygen production** technology to provide continuous and stable oxygen support for underground miners, fundamentally solving the problems of high cost, poor flexibility and potential safety hazards of traditional oxygen supply methods. For mining enterprises, equipping such a PSA oxygen plant is not only an important measure to implement the safety production policy, but also an effective way to reduce production costs and improve operational efficiency. With the continuous progress of mine safety technology, the **pressure swing adsorption oxygen plant** will be more intelligent and miniaturized, making greater contributions to the safe and efficient production of the mining industry.

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