$1,000.00 - $100,000.00
Min. Order : 1 Set

PSA Oxygen Gas Generator 3Nm3/h To 200Nm3/h 93% 95% 98% 99.5% 99.6% For Medical And Industrial Application

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Quick Details

Port: Shenzhen OR Guangzhou
Payment Terms: T/T,Western Union,MoneyGram
Supply Ability: 5 Set/Sets per Month
Condition: New
Production Rate: 100%
Usage: Oxygen
Warranty: 1 Year
Place of Origin: Guangdong China
After-sales Service Provided: Engineers available to service machinery overseas
Purity: 95%-99.9995%
Dimension(L*W*H): 3900*2600mm
Showroom Location: Egypt,United States,Philippines,Pakistan,Thailand,Chile,Romania,Kyrgyzstan,Malaysia
Pressure: 0.1~0.4Mpa (adjustable)
Certification: CE/ISO9001/ISO
Weight: according the model
Warranty of core components: More than 5 years
Brand Name: TAYQ
Type: Pressure Swing Adsorption(PSA)
Video outgoing-inspection: Provided
Core Components: PLC,Pressure vessel,Engine
Marketing Type: New Product 2020
Key Selling Points: Long Service Life
Applicable Industries: Manufacturing Plant,Food & Beverage Factory,Energy & Mining,Food & Beverage Shops
Voltage: 220v/380v/50-60hz
Local Service Location: Egypt,United States,Philippines,Pakistan,Thailand,Kenya,Colombia,South Africa,Uzbekistan
Machinery Test Report: Provided
Packaging Detail: container ,wooden box
Package Preview: https://sc02.alicdn.com/kf/H07977853fd194795a55dbeb1e0b7014aK.jpg_640x640.jpg
Guangdong Tayq Energy Equipment Co., Ltd.
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Response Rate
44.4%
On-time delivery rate
US$ 100,000+
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Products Description


TAYQ PSA Oxygen Generator Filling Plant

Capacity:
Purity: 93% ~ 99.6%
Pressure: 0.4Mpa ~ 30Mpa
Flow Rate: 5Nm³/h ~ 200Nm³/h.

Applications:
Medical Hospital
Laser Cutting
Fish Farming

Delivery:
15 - 25 Working Days
Product Paramenters
MODEL
TQO5-93
FLOW RATE
5Nm³/h
PURITY
93%±3%
PRESSURE
0.4Mpa (Adjustable)
Outlet Pressure
INLET AIR
GA7 0.8Mpa
Atlas Air Compressor Model
VOLTAGE
220V 50Hz 1 Pharse
OEM
POWER
0.5KW
PLC CONTROL
SIEMENS
OEM
ANALYZER
CHANGAI
Online Purity Checking
Electronmagnetic Valve
AirTAC
ZEOLITE MOLECULAR SIEVE
TAYQ TECH
TWIN ADSORPTION TOWER
TAYQ
Muffer
TAYQ
FLOW METER
TAYQ
SKID-MOUNTED FRAME
TAYQ
PIPE & VALVE
TAYQ
PRESSURE RELEASE VALVE
TAYQ
Application
·  Medical Application
PSA Oxygen Generation Filling Plant is widely used in the medical hospital, for supplying the pipes of the hospital and filling the oxygen cylinder tanks for its protable application.
· Oxygen Cutting Application
Semi-Automatic PET Bottle Blowing Machine Bottle Making Machine Bottle Moulding Machine PET Bottle Making Machine is suitable for
producing PET plastic containers and bottles in all shapes.
· Fish Farming Industry
Semi-Automatic PET Bottle Blowing Machine Bottle Making Machine Bottle Moulding Machine PET Bottle Making Machine is suitable for
producing PET plastic containers and bottles in all shapes.
Completing The Whole System
Title goes here.

While the TAYQ Oxygen Generator is at the heart of a nitrogen generation system, it isn’t the only component of the system. Allow Gardner Denver to tailor a system to your requirements by supplying the following.

Part1. Air Compressor
Your operation most likely already has an on-site air compressor, but the demands of a nitrogen/ oxygen generator usually call for a dedicated air compressor or an upgrade to your existing compressor.
Part2. Compressed Air Dryer
The air around us is typically very wet. As a result, the compressed air coming out of an air compressor is also very wet. Before sending this compressed air into Nitrogen/Oxygen Generator unit, it will most likely need to be treated by a refrigerated dryer. This will protect the components of the Nitrogen/Oxygen Generator, especially the CMS or Zeolite beds.
Part3. Compressed Air Filtration
A properly designed nitrogen generation system includes a number of filters. These filters protect the dryer, nitrogen generator and your downstream equipment from moisture and particulate. As with the dryer, all necessary filtration can be included on a nitrogen system skid.
Part4. Buffer & Storage Tanks
To ensure a steady supply of nitrogen into your system, storage tanks are needed both in front of and behind the Nitrogen/Oxygen Generator unit. These tanks can also typically be installed on the nitrogen generation skid.
Part5. Booster Compressor
If required by a process needs to be at a higher PSI than what comes out of the nitrogen generator. In those cases, a high pressure booster compressor should be installed in the compressed air system after the nitrogen generator.
About PSA Oxygen Technology
WHAT IS PRESSURE SWING ADSORPTION (PSA) TECHNOLOGY ?


The PSA process cycle consists of two key mechanisms: 

–Pressurisation/adsorption 
–Depressurisation/desorption Compressed air

Alternately pressurises each of two identical adsorber beds. Beginning at a point in the cycle where one adsorber bed (A) is being pressurised and the other adsorber bed (B) is undergoing depressurisation, the description of the PSA process cycle is as follows:

As compressed air enters adsorber bed A, mois- ture, oxygen, and carbon dioxide are adsorbed. 
After operating pressure is reached, nitrogen product flows from adsorber bed A into a nitro- gen product receiver prior to entering the pro- duct piping. Simultaneously, adsorber bed B is depressurised to atmospheric pressure. 

Upon completion of nitrogen production from adsorber bed A, an equalisation step occurs. Adsorber bed B (atmospheric pressure) is pres- surised to an intermediate pressure as the gas remaining in adsorber bed A (at operating pres- sure) flows into adsorber bed B. During this step, air is not consumed nor is product gas generated. Therefore a nitrogen receiver is applied to allow for a constant flow, purity and pressure of the nitrogen product throughout the PSA cycle.

Adsorber bed A then undergoes depressurisation and the oxygen enriched waste gas is vented to the atmosphere. Depressurisation permits the release of oxygen, carbon dioxide, and water vapor previously adsorbed during nitrogen production from adsorber bed A.

At the same time, adsorber bed B is brought to opera- ting pressure, and begins its nitrogen production portion of the cycle. Following nitrogen production, adsorber bed B undergoes equalisation and subsequent depressurisation. The cycle continues at the point where adsorber bed A undergoes pressurisation and adsorber bed B is depressurised.