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Oxygen Source Small Vertical External Type Ozone Generator

Oxygen Source Small Vertical External Type Ozone Generator

The ozone generation chamber and power cabinet are mounted on the same skid-mounted base. The generation chamber has a vertical structure, offering a small footprint and making it suitable for compact environments. Maintenance access is located at the top of the unit, so a clearance of 1.5 meters above the equipment must be reserved.

 

  • Ozone Capacity:

    2kg/h
  • Ozone Concentration:

    25mg/L
  • Air Flow:

    81Nm3/h
  • Air Source:

    Air
  • Power Consumption:

    16-18 kwh/kg O3
  • Cooling Water Volume:

    ≤8m3/h
  • Product Details

Oxygen Source Small Vertical External Type Ozone Generator

 

 

Brief Introduction

Oxygen Source Small Vertical External Type Ozone Generator is a device necessary for producing ozone from oxygen through dielectric barrier discharge. It involves multiple sciences such as mechanics, electrical engineering, electronics, materials, automation, chemical engineering, and electrochemistry, and is a complex mechatronics system.

 

The principle of ozone generator is dielectric barrier discharge method (a more commonly used corona discharge method), that is, the gas discharge breakdown phenomenon is generated by applying AC voltage between electrodes and discharge space separated by dielectric.


 

 The main components of an ozone generation chamber are as follows :

 

1. Oxygen filter: Remove impurities and particulate matter from the gas source to ensure the purity of the gas entering the generating chamber, thereby improving the efficiency of ozone generation and the service life of the equipment. 

2. Oxygen Regulator: Ensure that the oxygen pressure entering the corona di s charge chamber is stable within the desired range. 

3. Relief Valve: In order to prevent the system pressure from exceeding the safety limit, thus protecting the safety of equipment and operators. 

4. Pneumatic on-off Valve: It i s used to control the on/off of oxygen and ensure the smooth operation of the ozone generation process. 

5. Pneumatic Control Valve: It i s not only used to control the on/off of oxygen, but al so to precisely regulate the flow and pressure of oxygen to optimize the ozone generation process. 

6. Vortex Flow Meter: It is a commonly used flow measurement instrument for accurately measuring the flow of oxygen into the corona discharge chamber. The role of vortex flowmeters is very important to ensure the stability and efficiency of the ozone generation process . 

7. Pressure Transmitter: It is an important sensor used to monitor the pressure in the system in real time, and convert the pressure signal into an electrical signal and transmit it to the control system


 

8. Temperature Transmitter: It is used to monitor the temperature of ozone in real time and convert the temperature signal into an electrical signal and transmit it to the control system. 

9. Cooling Water Temperature Sensor: It is used to monitor the temperature of cooling water in real time. The function of the cooling water is to take away the heat generated during the corona discharge process, ensuring that the temperature of the corona discharge chamber and related equipment is kept within a safe range. 

10. Water Flow Switch: It is an important safety device used to monitor the flow of cooling water and ensure the normal operation of the cooling system. The role of the water flow switch is very important to prevent overheating and damage to the equipment due to insufficient cooling water flow. 

11. Local Pressure Gauge: Ensure that operators are able to monitor and control the system's pressure in real time. 

12. Ozone Concentration Detector: It is used to measure and monitor the concentration of ozone in real time. 

13. Dew Point Meter: It is used to measure and monitor the dew point temperature of gases (usually oxygen) entering the corona discharge chamber in real time. 

14. Valves and Base Plate: Valves are used to manage and regulate the flow of gases, usually oxygen; and the base serves to support and hold the ozone generator and its associated components.

 

 

Specifications

 

Oxygen source

 
Model Ozone Production
(kg/h)
Air Flow 
(Nm3/h)  
Power consumption
(kwh/kg O3)
Cooling water volume
(m3/h)
Generator Chamber/Power Cabinet Reference Net Weight (MT) Air Inlet and Outlet
Diameter
Water Inlet and
 Outlet Diameter
8nt% 10wt% 12mt% 8wt% 10t% 12Wt% W*D*H(mm) Size      
117mg/L 148mg/L 178mg/L 117mg/L 148mg/L 178mg/L
AK0-1.5KG 1.65  1.5  12  14.2  10.2  6.8    ≤3 2000°800*1800 0.4  G1” internal thread DN32
AK0-2KG 2.2  2  1.6  18.9  13.6  9.1  6-8 ≤4 2100*900*1800 0.45  G1” internal thread DN32
AK0-2.5KG 2.75  2.5  2.0  23.6  17.0  11.9  6-8 ≤5 2100*900*1800 0.5  G1” internal thread DN32
AK0-3KG 3.3  3  24  28.3  20.4  13.5  6-8 ≤106 2100*900*1800 0.65  G1” internal thread DN40
AK0-4KG 4.4  4  3.2  37.7  27.1  18.1  6-8 ≤8 2400*900*1800 0.8  G1” internal thread DN40
AK0-5KG 5.5  5  4  48  35  24  6-8 ≤10 2400*900*1800 0.95  G1 14” internal thread DN50
AK0-6KG 6.6  6  4.8  57  42  28  6-8 ≤12 2600*1000*2000 1.1  G1 1/4” internal thread DN50
AK0-7KG 7.7  7  5.6  67  48  32  6-8 ≤14 2600*1000*2000 1.3  G1 1/4" internal thread DN55
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