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High Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving Design

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High Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving Design

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Brand Name :Powerbuilder
Model Number :PN5100
Certification :CE ISO13485 ISO9001
Place of Origin :China
MOQ :1
Price :USD 12000-25000 pieces
Payment Terms :L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability :1000 pieces per year
Delivery Time :20 days
Packaging Details :Wooden Case
Capacity :100Nm/h
Inlet Diameter :DN50
Outlet Diameter :DN25
Size :2000*1400*2550 2600KG
Demand for clean compressed air :10.83
Recommend Air compressor :90Kw (12.6 m3/min 10 Bar ) or 75Kw (13.1m3/min 8Bar)
Control System :PLC
Warranty :1 Year
Automatic Control :Yes
Type :Nitrogen Generator
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Description of 99.999% Purity 100Nm3/H PSA Nitrogen Generator Food, metallurgy, chemical industry applicable

PSA Nitrogen Generator stands for pressure swing adsorption. It is a technology that can be used to generate nitrogen or oxygen for professional purposes. First, tank A is in the adsorption phase while tank B regenerates. In the second stage both vessels equalize pressure to prepare for the switch.

What are the advantages of PSA over cryogenic distillation?


Both PSA and cryogenic separation produce high-purity nitrogen, PSA technology offers several advantages over cryogenic separation. PSA-produced nitrogen is more cost-effective, provides a reliable supply, offers flexibility and control, and is environmentally friendly.

High Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving Design

PN5100 PSA Nitrogen Plant Technical Specification
lot Item Description /Specification
1 Model/Place of Manufacture PN5100
2 Nitrogen making principle PSA Pressure swing adsorption PSA变压吸附(开放式结构)
3 Application Operation place Indoor
Environment Ambient temperature Min -5℃/Max 50℃/ design temperature37℃
Ambient humidity Min 40%RH Max90%RH
4 Capacity 100 Nm3/hr
5 Nitrogen Gas Purity ≥99.999 % Test at outlet of psa Nitrogen
6 Nitrogen Purity Sensor HT-TA261 1set
7 Nitrogen Flowmeter Japan SMC flowmeter 1 sets
8 Inlet compress air pressure 0.75 -0.99Mpa
9 Inlet Oil Content ≤0.001mg/m3
10 Residual dust ≤0.01um
11 Residual water ≤0.069mg/m3
12 Air inlet atmospheric dew point -15℃
13 Demand for clean compressed air 10.83 Nm3/min Recommend Air compressor 90Kw (12.6 m3/min 10 Bar ) or 75Kw (13.1m3/min 8Bar)
14 Inlet Diameter DN50
15 Outlet Diameter DN25
16 Maximum inlet temperature MAX 30 ℃
17 Allowable working pressure range Min7.5Kgf / cm2 Max9.9Kgf / cm2
18 Carbon molecular sieve model/origin CMS-260
19 The tower body pipe 2 sets
20 Air and nitrogen buffer tank Piped storage tank
21 Instrument Tank, silencer PB Silencer ≤55dB(A) patent number:ZL 2015 2 0545860.3
22 Solenoid valve brand/origin AirTAC 7 sets
23 Pneumatic valve brand/origin PB customized 11 Sets (two for auto drain unqalified Gas)
24 Control System Control Power Supply 0.2kw/set 220V 50 HZ
PLC Mitsubishi core integrated screen /or Siemens S7-200 Smar
electrical box built-in 1 set
touch screen Mitsubishi core integrated screen/ MCGS
25 size LxWxH (mm) / Weight:(Kg) About:2000*1400*2550 2600KG
26 lead time 20 days    

2. Working Principles for PSA Nitrogen Generator

Pressure swing adsorption(PSA)nitrogen generator is an automatic equipment that uses air as material,use carbon molecular sieve as adsorbent, pressure reduction desorption principle to adsorb oxygen from the air, thereby separating nitrogen.


3. Main Features for PSA Nitrogen Generator

  • Raw material air is sourced from the environment, and nitrogen can be generated by supplying compressed air and power.
  • Nitrogen purity can be easily adjusted and produced by supplying compressed air.
  • The equipment is highly automated, enabling rapid gas production and unattended operation. Nitrogen can be generated within 10-15 minutes after startup.
  • The equipment has a simple process, requires minimal space, and has low energy consumption and costs.
  • The filling of molecular sieves is done using the snowstorm method to prevent their pulverization due to high-pressure airflow impact, ensuring long-term usability.
  • On-line inspection of imported analyzers is straightforward, requiring minimal space, and has low energy consumption and costs.

Carbon Molecular Sieve (CMS)

  • The Carbon Molecular Sieve (CMS) is a high-quality, high-density material designed with a compact spring-loaded structure. It maintains a balanced pressure at the top and bottom and is protected by a dedicated pressure sensor.
  • For purity levels below 99.99%, we typically utilize CMS-240.
  • To achieve a purity level of 99.999% in a single step, we employ CMS-260.

4. Standard Features

  • Siemens PLC control system
  • Customized and enhanced domestic valves
  • 7-inch LCD display
  • Taiwan AirTAC solenoid valve
  • Chengdu Jiuyin Nitrogen analyzer
  • SMC flowmeter
  • Professional brand molecular sieve

5. Technical indicators

  • Capacity Range : 2~2000Nm3/H
  • Purity Range : 95%~99.9999%
  • Outlet Pressure :0~6Bar or 0~ 8Bar
  • Booster outlet pressure range : 10 to 200Bar
  • Service Life 8-10 years as long as regular maintenance


6. Optional Features

  • Remote control system
  • Better valve of brand Gemu, Burkert
  • Dew point analyzer
  • Import Molecular Sieve
  • Italian ODE solenoid valve

Item No. Capacity Nm3/H Purity Size mm Inlet Diameter Outlet
Diameteer
Weight Kg Power
PN5003 3 ≥99.999% 900*500*1400 DN15 DN15 200 AC220V/0.2KW
PN5005 5 ≥99.999% 1200*850*1550 DN20 DN15 300 AC220V/0.2KW
PN5010 10 ≥99.999% 1450*1000*1900 DN25 DN15 600 AC220V/0.2KW
PN5015 15 ≥99.999% 1450*1000*1900 DN25 DN15 700 AC220V/0.2KW
PN5020 20 ≥99.999% 1450*1000*1900 DN25 DN15 800 AC220V/0.2KW
PN5030 30 ≥99.999% 1650*750*1900 DN32 DN15 900 AC220V/0.2KW
PN5040 40 ≥99.999% 1800*1200*2300 DN32 DN25 1100 AC220V/0.2KW
PN5050 50 ≥99.999% 1800*1200*2300 DN25 DN25 1200 AC220V/0.2KW
PN5060 60 ≥99.999% 1800*1200*2300 DN40 DN25 1500 AC220V/0.2KW
PN5080 80 ≥99.999% 1800*1200*2450 DN40 DN25 2500 AC220V/0.2KW
PN5100 100 ≥99.999% 2000*1400*2550 DN50 DN25 2600 AC220V/0.2KW
PN5120 120 ≥99.999% 2000*1400*2550 DN50 DN25 2800 AC220V/0.2KW
PN5130 130 ≥99.999% 2000*1400*2550 DN50 DN25 2950 AC220V/0.2KW
PN5150 150 ≥99.999% 2200*1600*2650 DN50 DN25 3200 AC220V/0.2KW
PN5180 180 ≥99.999% 2500*1600*3200 DN65 DN40 4500 AC220V/0.2KW
PN5200 200 ≥99.999% 2500*1600*2900 DN65 DN40 5500 AC220V/0.2KW
PN5250 250 ≥99.999% 2500*1600*2900 DN65 DN50 5500 AC220V/0.2KW
PN5300 300 ≥99.999% 3000*2000*3550 DN80 DN50 8500 AC220V/0.2KW

-Applications-

  • Application of SMT industry

Utilization in the semiconductor silicon industry
Ensuring protection, cleanliness, and chemical recovery in the semiconductor and integrated circuit manufacturing process

  • Electronic components industry application

Implementing nitrogen-based selective welding, purging, and encapsulation
Employing scientific nitrogen inert protection to ensure high-quality electronic component production

  • Semiconductor packing industry application

Nitrogen-based packaging, reduction, and storage

  • Powder metallurgy and metal processing industry

Application in heat treatment industry, including annealing, carbonization, high-temperature furnace protection
Facilitating low-temperature assembly and plasma cutting of metal parts

  • Chemical industry and advanced material industry application

Creating oxygen-free atmospheres in chemical processes to enhance production safety
Utilizing nitrogen for purging pipes and vessels, filling nitrogen storage tanks, gas displacement, leak detection, combustible gas protection, chemical reaction agitation
Ensuring protection in chemical fiber production, diesel hydrogenation, and catalytic reforming

  • Food and medicine industry application

Primarily used for food packaging, preservation, and storage
Configurable sterilization filter for food drying and sterilization
Application in medicine packaging, medical replacement gas, and medicine delivery atmosphere

  • Oil and gas industry

Utilizing nitrogen for oil refining, container machine pipeline nitrogen-filled purge, leak detection, and nitrogen injection oil recovery.

Ten common questions about nitrogen generators

1.What purity of nitrogen gas can a nitrogen generator produce?

A nitrogen generator can produce nitrogen gas of various purities, ranging from standard industrial-grade nitrogen (typically 95% to 99% purity) to high-purity nitrogen (usually exceeding 99.9%), and even ultra-high purity nitrogen (typically exceeding 99.999%). The choice of purity depends on specific application requirements.

2.What is the working principle of a nitrogen generator?

The working principle of a nitrogen generator is primarily based on either the adsorption technology using molecular sieves or membrane separation technology. Adsorption technology selectively adsorbs oxygen and moisture using a specific adsorbent material, such as molecular sieves, while allowing nitrogen to pass through. Membrane separation technology, on the other hand, utilizes the size and permeability of gas molecules to achieve the separation of nitrogen from other gas components on a membrane.

3.What inputs does a nitrogen generator require, and how does it operate?

A nitrogen generator typically requires air as the input source. When operating the nitrogen generator, air is compressed using an air compressor and then processed through the adsorber with molecular sieves or the membrane separator within the nitrogen generator. Finally, pure nitrogen is obtained as the output. Some nitrogen generators may also require an electrical power supply.

4.How is a nitrogen generator different from nitrogen supply in gas cylinders?

The main difference between a nitrogen generator and nitrogen supply in gas cylinders lies in the mode of nitrogen supply. A nitrogen generator continuously extracts nitrogen from the air, providing a continuous nitrogen supply without the need for cylinder replacements. In contrast, nitrogen supply in gas cylinders requires periodic cylinder replacements, and the supply quantity is limited by the cylinder capacity.

5.What should be considered for the maintenance of a nitrogen generator?

The maintenance of a nitrogen generator typically involves regular cleaning and replacement of the adsorber with molecular sieves or membrane separator, inspection and maintenance of the compressed air system, monitoring nitrogen generation performance, etc. Specific maintenance requirements should be referred to the user manual or guidance provided by the manufacturer of the nitrogen generator.

6.Which industries are nitrogen generators suitable for?

Nitrogen generators are widely used in various industries, including industrial, medical, food and beverage, and laboratory applications. They are commonly used in industries such as chemicals, electronics, and metal processing. In the medical field, they are used for anesthesia and gas delivery. In the food and beverage industry, they are used for packaging and preservation. In laboratories, they are used for atmospheric control and protection of equipment.

7.What is the noise level of a nitrogen generator during operation?

The noise level of a nitrogen generator varies depending on the model and design. Generally, nitrogen generators have low noise levels, especially when compared to traditional compressed air systems. Specific noise levels can be referred to the technical specifications or noise test reports of the nitrogen generator.

8.How long does it take for a nitrogen generator to start producing nitrogen gas?

The startup time of a nitrogen generator depends on the model and specifications. In general, nitrogen generators have short startup times, typically ranging from a few minutes to several tens of minutes. Larger capacity or higher purity requirement nitrogen generators may require longer startup times.

9.Can a nitrogen generator simultaneously produce nitrogen gas and oxygen gas?

The design purpose of a nitrogen generator is to separate oxygen and nitrogen to produce high-purity nitrogen gas. Therefore, in most cases, a nitrogen generator does not simultaneously produce nitrogen gas and oxygen gas. If simultaneous production of nitrogen and oxygen is required, additional equipment or techniques need to be used for further processing.

10.What is the energy consumption of a nitrogen generator?

  • The energy consumption of a nitrogen generator is influenced by factors such as its specific model, specifications, and operating conditions. Overall, nitrogen generators are known for their relatively low energy consumption, particularly when compared to traditional nitrogen supply methods that involve gas cylinders.
  • Nitrogen generators are designed to optimize energy efficiency by adjusting nitrogen production based on the actual demand. This helps minimize energy waste and ensures that nitrogen is generated only when needed, reducing unnecessary energy consumption. By dynamically adjusting nitrogen production, nitrogen generators can adapt to varying usage patterns and maintain a steady nitrogen supply while optimizing energy efficiency.
  • The energy consumption of a nitrogen generator can be further optimized through various design features and technologies. For example, some nitrogen generators incorporate energy-saving components such as high-efficiency compressors, advanced control systems, and heat recovery systems. These features help minimize energy losses and improve the overall energy efficiency of the system.
  • It is worth noting that the specific energy consumption of a nitrogen generator can vary depending on factors such as the purity level of the generated nitrogen, the capacity of the generator, and the ambient conditions in which it operates. Manufacturers typically provide energy consumption specifications or guidelines based on standard operating conditions, allowing users to evaluate and compare different models based on their energy efficiency.
  • In summary, nitrogen generators are designed with energy efficiency in mind, resulting in relatively low energy consumption compared to traditional nitrogen supply methods. Their ability to adjust nitrogen production based on actual demand helps optimize energy efficiency and minimize unnecessary energy consumption. Incorporation of energy-saving components and technologies further enhances their overall energy efficiency.

High Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving Design
High Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving Design

High Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving DesignHigh Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving DesignHigh Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving DesignHigh Efficiency PSA Nitrogen Generator/ Psa Nitrogen Gas Generator With Energy Saving Design

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