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The air source industrial ozone generator is a device that uses air as a raw material to generate ozone through high-voltage discharge, widely used in industrial water treatment, air purification, and food processing, for disinfection, deodorization, and degradation of harmful substances. Compared to oxygen-source ozone generators, air-source ozone generators are lower in cost but produce a lower concentration of ozone, making them suitable for scenarios where ozone concentration requirements are not high.
Type | Ozone Production | Oxygen | Ozone Concentration | Cooling water flow | Power | Ozone Room Dimensions | Pipeline | PSU Dimensions | |
---|---|---|---|---|---|---|---|---|---|
kg/h | Nm3/h | mg/l | m3/h | KW/h | mm | Cooling water | Gas Pipeline | ||
SOGA-500G | 0.5 | ≤ 20 | 25–30 | 2 | ≤ 7.5 | 1000 × 1000 × 1985 | DN20 | DN25 | 700 × 1000 × 2100 |
SOGA-800G | 0.8 | ≤ 32 | 25–30 | 2 | ≤ 12 | 1000 × 1000 × 1985 | DN20 | DN25 | 700 × 1000 × 2100 |
SOGA-1KG | 1 | ≤ 40 | 25–30 | 3 | ≤ 15 | 1000 × 1000 × 1985 | DN25 | DN25 | 700 × 1000 × 2100 |
SOGA-2KG | 2 | ≤ 80 | 25–30 | 6 | ≤ 30 | 1100 × 1100 × 1985 | DN32 | DN40 | 700 × 1000 × 2100 |
SOGA-3KG | 3 | ≤ 120 | 25–30 | 9 | ≤ 45 | 1100 × 1100 × 1985 | DN40 | DN50 | 1600 × 1200 × 2200 |
SOGA-4KG | 4 | ≤ 160 | 25–30 | 12 | ≤ 60 | 1400 × 1400 × 2000 | DN40 | DN50 | 1600 × 1200 × 2200 |
SOGA-5KG | 5 | ≤ 200 | 25–30 | 15 | ≤ 75 | 1400 × 1400 × 2050 | DN50 | DN65 | 1600 × 1200 × 2200 |
SOGA-8KG | 8 | ≤ 320 | 25–30 | 24 | ≤ 120 | 1400 × 1400 × 2100 | DN65 | DN65 | 1600 × 1200 × 2200 |
SOGA-10KG | 10 | ≤ 400 | 25–30 | 30 | ≤ 150 | 3600 × 1100 × 1800 | DN65 | DN80 | 1800 × 1200 × 2200 |
SOGA-15KG | 15 | ≤ 600 | 25–30 | 45 | ≤ 225 | 3600 × 1225 × 1908 | DN80 | DN100 | 1800 × 1200 × 2200 |
SOGA-20KG | 20 | ≤ 800 | 25–30 | 60 | ≤ 300 | 3600 × 1375 × 2050 | DN100 | DN125 | 2400 × 1500 × 2200 |
SOGA-25KG | 25 | ≤ 1000 | 25–30 | 75 | ≤ 375 | 3600 × 1445 × 2120 | DN100 | DN150 | 2400 × 1500 × 2200 |
SOGA-30KG | 30 | ≤ 1200 | 25–30 | 90 | ≤ 450 | 3600 × 1531 × 2326 | DN125 | DN150 | 2700 × 1500 × 2200 |
The air source industrial ozone generator uses DBD discharge method to produce ozone, which typically consists of two electrodes: a high-voltage electrode and a ground electrode, with an insulating medium (usually glass) sandwiched between the electrodes.
After the air is compressed and pre-treated to remove moisture and impurities, it flows into the generator inlet. Under the conditions of applied alternating high voltage, the oxygen gas between the high-voltage electrode and the ground electrode undergoes corona discharge. As the voltage increases, the electric field strength rises, exciting and ionizing the oxygen molecules in the gas, releasing free electrons. These free electrons collide with other oxygen molecules (O₂), leading to further ionization and the generation of reactive oxygen atoms (O). These reactive oxygen atoms then combine with oxygen molecules to form ozone (O₃), which is ultimately discharged through the generator's outlet.
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