Photocatalytic Oxidizer Air Purifier Review

Photocatalytic Oxidizer Air Purifier

  • P600 Photocatalytic Air Purifier offers the most effective airborne chemical, odor and VOC abatement available today together with supression of microorganisms and particle filtration
  • Developed by space research laboratories, to deliver a new and speedy airborne chemical abatement process
  • Fitted with the new Airpura TitanClean photocatalytic oxidizion technology
  • Working in concert with Airpura’s 20 watt UV germicidal lamp
  • Combined with Hepa and activated carbon filters

Airpura P600 VOCs Chemicals Air Purifier (White) Photocatalytic Oxidation The Airpura P600 offers the most effective airborne chemical, odor, and VOC abatement available today together with suppression of microorganisms and particle filtration. The P600 uses the latest discoveries in nano-technology to deliver a new and speedy airborne chemical abatement process. The TitanClean Titanium Dioxide Photo-Catalytic Oxidizer dramatically increases the range of dangerous airborne chemicals that can be neutralized safely and effectively. TitanClean’s titanium dioxide (TiO2) coating in conjunction with the UV light, creates an oxidizing process that instantly breaks molecular bonds and reduces airborne chemicals to smaller safer compounds, until carbon dioxide and water vapors are left. The TitanClean Photocatalytic Oxidizer is combined with Airpura’s 18 lb Activated Carbon bed, true Hepa Filter and 20 watt UV Germicidal Lamp to deliver the most complete air cleaning system available today. Rids your air of: formaldehyde, molds, radon, ammonia, mercury vapor, benzene, aldehyde, pesticides, butanol, carbon monoxide, exhaust fumes, PCBs, sulfur oxides, toluene, nitrous oxide, chloroform, dioxane, chlorotoluene, and trichlorophenol. Warranty: 5 years parts and 10 years labor manufacturer’s warranty. Titanium Dioxide Photocatalytic Oxidization: Developed and used in space technology laboratories for both air and water purfication A metal surface coated with a metal oxide is irradiated with UV light to produce hydroxyl radicals and super-oxide ions The hydroxyl radicals and super-oxide ions break the molecular bonds of chemicals they come into contact with and slice them into smaller compounds, that are further broken down until only carbon dioxide and water vapor are left For maximum efficiency, the process requires a sufficient surface area of reflective metal coated with a metal oxide to be positioned at a critcal distance from the UV lamp while still allowing a g

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