Ozone integration for a wide variety of ozone and AOP applications. We supply application specific equipment designed for reliable operation, along with engineering and advice to ensure your project is successful. We also provide parts, service, and repair of your ozone equipment The ozone layer located 20 to 50 km above the ground surface protects the world from intense UV rays. An eco-friendly approach using the oxidation power of ozone, a substance widely seen in nature, has been used for many years to support our daily life in the field of water and air treatments. The ozone generation system develop Portico realizes high-efficiency ozone generation based on advanced technology. This technology has been adopted in many water and waste water facilities to date
How is ozone produced?
Ozone is produced when oxygen molecules (O2) are split into atomic oxygen (O) then recombined into ozone. (O3). In most commercial applications, ozone is produced when a gas containing oxygen is passed through an electrical field separated by two electrodes. When oxygen molecules in the gas interact with the electrical field, they split and recombine forming ozone. This process is the Corona Discharge ozone generation method.
Why use ozone generation for disinfection?
Ozone is one of the strongest oxidant agents on the market – 50% stronger than chlorine – making it one of the most powerful oxidants available in today’s municipal, industrial and commercial markets Ozone oxidation is the most excellent and environment friendly to disinfects the water and air. It works effectively against bacteria, viruses compared to chlorine. In addition, oxidizing properties can also reduce the concentration of iron, manganese, sulfur and reduce or eliminate taste and odour problems. Ozone oxides the iron, manganese, and sulfur in the water to form insoluble metal oxides or elemental sulfur. These insoluble particles are then removed by post-filtration. Organic particles and chemicals will be eliminated through either coagulation or chemical oxidation. Ozone is unstable and it will degrade over a time frame ranging from a few seconds to 30 minutes. The rate of degradation is a function of water chemistry, pH and water temperature.
Application of Ozone Generators
Ozone decays into harmless oxygen and is an environmentally friendly technology that does not create any chlorinated disinfection byproducts. Due to ozone’s oxidation power, it has many advantages for water treatment systems, including Applications
Ozone Benefits
Ozone can be used in many applications and it is generated on site from oxygen, which eliminates the need to haul chemicals or other dangerous products. In many applications ozone saves money, environment & time. Ozone is much healthier & safer to use than harsh caustic chemicals & it does an excellent job. There are many applications where thermo oxidation is used to disinfect or clean. Ozone can do the same job as thermo oxidation, but with the advantage of working in cold environments, this provides savings in energy & money.
To perform ozone generation by silent discharge efficiently, the dimensional accuracy of a discharge section on an electrode and efficient cooling of the ozone generation tube are important.The ozone generation tube developed. Portico has realized an excellent dimensional accuracy and offers high cooling efficiency Thanks to this structure, high-efficiency ozone generation is possible.
A high-reliability ozone generation system is supplied based on the combination of an ozone generation tube with low breakage risks and inverter power technology highly acclaimed in domestic and international markets
Model# | POG-A05 | POG-A10 | POG-A20 | POG-A25/ POG-W25 | POG-A30/ POG-W30 | POG-W50 | POG-W75 | POG-W100 | POG-W150 | POG-W200 | POG-W300 | POG-450 |
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Ozone Output | 05 g/hr | 10 g/hr | 20 g/hr | 25 g/hr | 30 g/hr | 50 g/hr | 75 g/hr | 100 g/hr | 150 g/hr | 200 g/hr | 300 g/hr | 450 g/hr |
Technology used | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge | Corona Discharge |
Power Supply | AC 220V/5A, 50Hz, 1 Ø | AC 220V/5A, 50Hz, 1 Ø | AC 220V/5A, 50Hz, 1 Ø | AC 220V/5A, 50Hz, 1 Ø | AC 220V/5A, 50Hz, 1 Ø | AC 220V/10A, 50Hz, 1 Ø | AC 220V/10A, 50Hz, 1 Ø | AC 440V/15A, 50Hz, 3 Ø | AC 440V/15A, 50Hz, 3 Ø | AC 440V/15A, 50Hz, 3 Ø | AC 440V/15A, 50Hz, 3 Ø | AC 440V/15A, 50Hz, 3 Ø |
Power (Watts) | 100W | 200W | 350W | 375w | 375W | 700W | 1000W | 1250W | 1850W | 2500W | 3750W | 5600W |
Cooling Type | Air Cooled | Air Cooled | Air Cooled | Air Cooled / Water Cooled | Air Cooled / Water Cooled | Water Cooled | Water Cooled | Water Cooled | Water Cooled | Water Cooled | Water Cooled | Water Cooled |
Water Inlet Pressure | - | - | - | 1 - 10 PSI | 1 - 10 PSI | 1 - 10 PSI | 1 - 10 PSI | 1 - 10 PSI | 1 - 10 PSI | 1 - 10 PSI | 1 - 10 PSI | 1 - 10 PSI |
Operating Temperature | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C | 0 - 40˚C |
Ozone Concentration | 70 - 80 g/m3 | 70 - 80 g/m3 | 70 - 80 g/m3 | 70 - 80 g/m3 / 80 - 90 g/m3 | 70 - 80 g/m3 / 80 - 90 g/m3 | 80 - 90 g/m3 | 80 - 90 g/m3 | 80 - 90 g/m3 | 80 - 90 g/m3 | 80 - 90 g/m3 | 80 - 90 g/m3 | 80 - 90 g/m3 |
MOC of Electrode | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L | SS 304L/316L |
No. of Electrodes | 01 Nos | 01 Nos | 02 Nos | 01 Nos | 03 Nos / 01 Nos | 02 Nos | 03 Nos | 04 Nos | 06 Nos | 08 Nos | 12 Nos | 18 Nos |
MOC of all Ozone contact parts | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass | SS/Teflon/Glass |
Oxygen Flow | 2.0 LPM | 4.0 LPM | 5.0 LPM | 7.0 LPM / 5.0 LPM | 8.0 LPM / 6.0 LPM | 10.0 LPM | 15.0 LPM | 20.0 LPM | 30.0 LPM | 40.0 LPM | 50.0 LPM | 80.0 LPM |
Oxygen Concentration | > 90% | > 90% | > 90% | > 90% | > 90% | > 90% | > 90% | > 90% | > 90% | > 90% | > 90% | > 90% |
Display Meter | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt | Ammeter/ Voltmeter (Hours Counter - opt |
Protections | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV | 1. High Voltage, 2. High Current, 3. Short CKT, 4. NRV |
MOC of NRV | SS 304 | SS 304 | SS 304 | SS 304 | SS 304 | SS 304 | SS 304 | SS 304 | SS 304 | SS 304 | SS 304 | SS 304 |
Size (HxBxD in mm) | 500x400x180 | 770x400x180 | 770x430x180 | 770x400x300 | 770x400x300 | 800x400x500 | 800x500x500 | 1250x800x300 | 1250x800x500 | 1250x800x500 | (1250x800x500)x2nos | (1250x800x500)x3nos |