UV-AOP高级氧化
Ultraviolet Advanced Oxidation Process (UV-AOP) is an environmentally friendly technology that uses ultraviolet radiation to trigger oxidation reactions. Its core principle is to use UV light to excite oxidants to generate highly oxidizing free radicals, which in turn degrade organic and inorganic pollutants. UV-AOP is characterized by high efficiency, environmental friendliness, and zero secondary pollution. UV-AOP systems can be categorized into various types depending on the type of oxidant, the most common of which include UV/hydrogen peroxide, UV/ozone, and UV/chlorine.
ONYX-Clear-SZ-AOP can serve as the UV light source for UV-AOP. This UV-AOP system can be used to degrade toxic micropollutants such as nitrosodimethylamine, 1,4-dioxane, endocrine disrupting chemicals (EDCs), pesticide residues, cyanobacterial toxins, GSM (geosmin), and 2-MIB (dimethylisoborneol).
Advantages
![]() | Medium-pressure UV lamps: Medium-pressure UV lamps feature high power (single lamp power ≥ 3kW), compact size, and a broad wavelength (primary wavelength is between 200nm and 400nm). Their broad spectrum makes them suitable for treating most pollutants. |
Automatic Cleaning System: The company independently developed a third-generation spiral high-temperature-resistant cleaning structure suitable for harsh working conditions. This product has been tested on-site for over six months to track cleaning results, completely resolving the problem of high-temperature scaling on medium-pressure lamp casings. | ![]() |
Electrolytic Polishing: The housing is made of strong, corrosion-resistant stainless steel (316L), electrolytically polished inside and out to enhance UV reflection and refraction. | |
Custom Ballast: Excellent compatibility with lamps, providing more stable UV light output. | ![]() |
![]() ![]() | Flow simulation: Ensures lower head loss and uniform light intensity distribution. |
Intelligent Automation: Touchscreen + PLC + IoT cloud control for real-time monitoring of equipment operating status. | ![]() |
Parameter
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