Airocide Commercial Air Purifiers
SAFE EFFECTIVE SIMPLE
No harmful byproducts & FDA approved-Removes 99.9% of allergens, mold, vocs, bacteria, & more.
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Airocide GCS-25 Commercial Air Purifier
Airocide
Now: $2,575.43Was: $2,799.00The Airocide GCS-25 Commercial Air Purifier For bigger locations, such as hospitals, offices, conference rooms, classrooms, and restaurants, Airocide GCS series air cleaners are suitable. Remove odor particles, mold, airborne virus and bacteria in...Now: $2,575.43Was: $2,799.00 -
Airocide GCS-50 Commercial Air Purifier
Airocide
Now: $4,080.91Was: $5,040.00Airocide GCS-50 Commercial Air Sanitizer The industry standard for protection in settings with conventional levels of bioburden. The GCS 50 presents 2.5 meters of catalytic surface and 20 254-nanometer high K-factor lamps to produce air cleansed to a 99...Now: $4,080.91Was: $5,040.00 -
Airocide GCS-100 Commercial Air Purifier
Airocide
Now: $6,836.24Was: $7,560.00Airocide GCS-100 Commercial Air Cleaner For bigger locations, such as hospitals, offices, conference rooms, classrooms, and restaurants, Airocide GCS series air cleaners are suitable. Remove odors, mold, germs, and other things from the air. Engineered...Now: $6,836.24Was: $7,560.00 -
Airocide® HD-1200 Air Purifier
Airocide
$2,897.36The largest and most potent air purifier system in our inventory is found in the Airocide HD-1200 series air cleaner. MERV-13 filtering for bioparticulate is an extra feature available with HD air purifiers. Airocide HD products, which have sturdy metal...$2,897.36
Airocide can eliminate mold, viruses, bacteria, and other airborne contaminants, lowering the risk of infection.
Air Sanitation Technology Developed for NASA
The system is based on ground-breaking research conducted by the Wisconsin Center for Space Automation and Robotics (WCSAR), University of Wisconsin (UW), and NASA Space Program. A proprietary method is used by the Airocide commercial air filtration systems to eliminate more than 99.99% of the airborne viruses that pass through its processor. By totally mineralizing (destroying) them using Airocide, they are transformed into carbon dioxide and water vapor.
A.M.I. Services introduces to you the newest line of Airocide Commercial air purification solutions. The Airocide air sanitation technology was developed by NASA. This latest Airocide innovation is a non chemical, no ozone air purification technology that removes airborne contaminants and prevents airborne cross-contamination protecting your company in addition to your companies products and brands. Airocide does this both efficiently and cost effectively.
The story started in space. NASA scientists were tasked with learning how to grow and manage their own crops. They had to build space-age greenhouses to grow large scale crops. They quickly discovered the presence of Ethylene, which is a naturally occurring gas that is given off by plants and speeds up ripening of vegetables and fruit. But in a closed environment, the gas built up too quickly causing plants to mature too fast. So NASA had to quickly find out how to greatly reduce this build up of Ethylene gas.
That's where Airocide comes in. It was not only important to remove this gas in outer space but also in cold storage warehouses, florists and commercial grocers here on earth as well where shelf life is shortened from Ethylene gas as well.
The Airocide technology mineralizes (turns organics into water & carbon dioxide) mold, fungi, airborne bacteria, viruses, allergens, odors and VOC's (volatile organic compounds). It also doesn't produce any harmful byproducts like ozone.
The Airocide technology was first used aboard the Columbia STS-73 mission to successfully to remove ethylene gas and other airborne contaminants to preserve crop growth.
About Airocide
Allow us to introduce you to Airocide by Airocide Air, a non-chemical (no ozone), commercial air purification technology. Our commercial air sanitation solution was Technology Developed for NASA and offers the latest innovation in airborne cross-contamination protection for your company, your valuable brands, and your products. The applications are almost infinite when it comes to improving and protecting commercial indoor air quality (IAQ), both effectively and cost efficiently.
The Airocide story begins in space with NASA. They had a problem with ethylene gas (C2H4)! NASA pioneering space travelers needed to grow and manage their own crops. This required the development of space-age greenhouses where astronaut farmers could experiment with harvesting large-scale food crops. Ethylene is a naturally occurring, odorless, colorless gas given off by plants that speeds up the ripening of fruits, vegetables and the aging of flowers, encouraging decay. Comprised of carbon and hydrogen, in closed growing environments, like on a spacecraft or in a terrestrial greenhouse, ethylene builds up quickly and plants mature too fast. Therefore, ethylene gas removal is important to preserving crops not just in space, but also on Earth. Because commercial grocers, cold storage warehouses and florists also have an equally specific interest in removing the ethylene gas. If they don’t it ultimately shortens the shelf life, storage life and home life of their products.
Airocide completely mineralizes (turns organics into carbon dioxide and water vapor) airborne bacteria, mold, fungi, mycotoxins, viruses, allergens, Volatile Organic Compounds (VOC’s like ethylene), and odors. What’s more, the commercial device does not use nor produce ozone or any other harmful byproducts. This Airocide technology was first launched aboard Space Shuttle Columbia mission STS-73, where onboard the spacecraft the device was used successfully to preserve crop growth by removing ethylene gas and other airborne contaminants.
The air purifying technology in Airocide was proven to kill 99.999987% of Bacillus thuringiensis, a close cousin to the anthrax bacteria, in a single pass through its reactor.
Among other bacteria, fungi and viruses, photocatalytic oxidation technology kills airborne Lactobacillus, which can be a problem in wine, beer and other beverage and food processing facilities.
The History of PCO PCO has gained attention in recent years as an approach to treat gaseous pollutants and microbes. Over the past quarter century, construction practices have favored the design of tight buildings to reduce energy costs of conditioning the indoor air. However, without sufficient ventilation, the concentration of volatile organic compunds (VOCs) can be increased. Indoor air contamination by undesired VOCs is a possible causative agent of the sick building syndrome. The first published report of photoreactivity (the precursor to PCO) was made numerous potential applications of PCO. Studies involving gas phase PCO are relatively few in number compared with the published studies of the photocatalytic treatment of compounds in aqueous media. However, there is increasing interest in gas-solid PCO because of the potential application to contaminant control in indoor environments including residences, office building, factories, aircraft, and spacecraftin 1921. However, photocatalysis studies only began in 1971.
Photocatalytic Oxidation (PCO)
The technology used in Airocide’s commercial air purification solution combines two known pathogen-killing techniques, Photacatalytic oxidation (PCO) and ultraviolet light to destroy harmful airborne microbes. The oxidant used in PCO is the oxygen that makes up 20% of our air. Because the concentration of oxygen in air is so much larger than the (total) concentration of gaseous indoor air pollutants, it is not necessary to employ additional oxidants such as ozone (O3) or hydrogen peroxide (H202). The system produce no ozone.
Titanium dioxide (TiO2) is the photocatalyst used. A unique process is used to create the patented TiO2 formula that coats the catalyst material. When this material is irradiated with the ultraviolet photons from the lamps inside, hydroxyl radicals and super-oxide ions are formed. These elements will oxidize (reduce to trace elements of carbon dioxide and water) volatile organic compounds (VOC’s) absorbed on the catalyst surface. They will also kill and decompose airborne pathogens. Because the organic material is completely oxidized by this process, the photocatalytic reactor is self-cleaning relative to organic material on the catalyst surface.
Airflow Explanation
While Airocide Photocatalytic Air Purifying Systems are not integrated or built into the central heating, ventilation and cooling (HVAC) systems of a building, its room-to-room performance is enhanced by super pure air mixing and traveling around the space via the room’s natural and forced air movement. In essence, the Airocide system’s effectiveness in a given coverage area is enhanced by the HVAC system’s interconnected ductwork. Airocide air purifiers can be installed attached to walls or ceiling in any room of a building and its benefit can be seen in other rooms as long as that room location has an air conditioning/heating inlet and air return. In this way air ‘communicates’ throughout the interconnected and adjacent rooms. Air purification and removal of air contamination occurs by multiple air passages through the Airocide system’s photocatalytic chamber where a chemical reaction takes place yielding more than 99.99% pure air that then mixes with remaining contaminated air. A pure – to – contaminated mixing then occurs multiple times over several hours resulting in the lowering of both solid particles and gaseous contamination in the total space. As new contaminants are introduced by opening doors to the outside or internally generated gaseous chemicals or human carriers of new organic matter the air purifying system continues 24/7 processing the air. The key to maximizing its effectiveness is the continuous operation and exceptionally high single pass removal capacity. Only super pure air and trace amounts of water vapor and carbon dioxide pass out of the system.
Just as the colored dye in this glass of water will eventually diffuse into the entire glass, an Airocide unit mixes with a room or building air to process out contaminants.
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