Reactive oxygen technology uses a high-voltage electrostatic Tetosh pulse square method (active oxygen emission tube emits hundreds of billions of high-energy ions per second) in synergy with nanophotocatalytic reverberation, producing a large number of high-density reactive oxygen molecules, active anions, photoelectrons and strong oxidizing reactive group such as a hydroxyl radical. It collides with contaminant molecules, activates organic molecules, and smashes them directly. At the same time, the oxygen molecules in the atmosphere are triggered to generate secondary reactive oxygen species, and the organic molecules produce a series of chain reactions, and use the energy generated by the self-reverberation to maintain the oxidation reaction and further oxidize the organic substances.

Reactive oxygen ion as a good electron acceptor to the field photocatalytic reverberation, to achieve a useful coupling between active oxygen oxidation and nano-photocatalysis, greatly enhanced the obedience of nano-photocatalytic removal of pollutants. This skill is a useful method for handling low-concentration, high-flow toxic and harmful gases.

Compared with the traditional disposal punishment skills, the active oxygen purification setting deodorization equipment has a lot of advantages in terms of floor space, quality, energy consumption and disposal penalties.

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