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After the malodorous gases are introduced into this purification device via exhaust systems, the device uses high-energy UV light beams and ozone to carry out a simultaneous decomposition and oxidation reaction on these gases, thereby converting them into low-molecular-weight compounds, water, and carbon dioxide, which are then discharged outside through exhaust ducts
After the malodorous gases are introduced into this purification device via exhaust systems, the device uses high-energy UV light beams and ozone to carry out a simultaneous decomposition and oxidation reaction on these gases, thereby converting them into low-molecular-weight compounds, water, and carbon dioxide, which are then discharged outside through exhaust ducts
After the malodorous gases are introduced into this purification device via exhaust systems, the device uses high-energy UV light beams and ozone to carry out a simultaneous decomposition and oxidation reaction on these gases, thereby converting them into low-molecular-weight compounds, water, and carbon dioxide, which are then discharged outside through exhaust ducts
High-energy ultraviolet UV: (1) Break down foul-smelling chemical substances into individual atoms; (2) It decomposes the oxygen in the air to produce active positive and negative oxygen ions, which in turn generate ozone ; (3) Chemical substances consisting of individual atoms are recombined into low-molecular-weight compounds through oxidation by ozone, resulting in the formation of water, carbon dioxide, and other substances ; (4) Kill microbial bacteria, achieving deodorization through both chemical and microbial means; this is what is commonly referred to as sterilization and deodorization. It is a coordinated, chain-like complex reaction process that can be completed in a very short time (2–3 seconds). Disadvantages: Low efficiency, high energy consumption; it is often used in combination with other gas treatment methods.
UV photolysis plasma deodorization equipment consists of an ion generator, ion transfer tubes, and a control system; it is an air purification device used for deodorizing and removing unpleasant odors, and is widely applied in factories, workshops, sewage treatment plants, and waste deodorization facilities. Common types include plasma deodorization devices, high-energy ion deodorization devices, and photo-hydrogen ion deodorization devices. The main principle of ion deodorization equipment is that, under the action of a high-voltage electric field, a large number of positive and negative oxygen ions are generated, which possess strong oxidizing properties. It can oxidize and decompose foul-smelling pollutants such as methanethiol, ammonia, hydrogen sulfide, ethers, and amines in an extremely short time, breaking the chemical bonds of organic volatile gases to ultimately produce stable and harmless small molecules like carbon dioxide and water, thereby achieving the purpose of air purification.
UV photolysis plasma deodorization equipment consists of an ion generator, ion transfer tubes, and a control system; it is an air purification device used for deodorizing and removing unpleasant odors, and is widely applied in factories, workshops, sewage treatment plants, and waste deodorization facilities. Common types include plasma deodorization devices, high-energy ion deodorization devices, and photo-hydrogen ion deodorization devices. The main principle of ion deodorization equipment is that, under the action of a high-voltage electric field, a large number of positive and negative oxygen ions are generated, which possess strong oxidizing properties. It can oxidize and decompose foul-smelling pollutants such as methanethiol, ammonia, hydrogen sulfide, ethers, and amines in an extremely short time, breaking the chemical bonds of organic volatile gases to ultimately produce stable and harmless small molecules like carbon dioxide and water, thereby achieving the purpose of air purification.
UV photolysis plasma deodorization equipment consists of an ion generator, ion transfer tubes, and a control system; it is an air purification device used for deodorizing and removing unpleasant odors, and is widely applied in factories, workshops, sewage treatment plants, and waste deodorization facilities. Common types include plasma deodorization devices, high-energy ion deodorization devices, and photo-hydrogen ion deodorization devices. The main principle of ion deodorization equipment is that, under the action of a high-voltage electric field, a large number of positive and negative oxygen ions are generated, which possess strong oxidizing properties. It can oxidize and decompose foul-smelling pollutants such as methanethiol, ammonia, hydrogen sulfide, ethers, and amines in an extremely short time, breaking the chemical bonds of organic volatile gases to ultimately produce stable and harmless small molecules like carbon dioxide and water, thereby achieving the purpose of air purification.
UV photolysis plasma deodorization equipment consists of an ion generator, ion transfer tubes, and a control system; it is an air purification device used for deodorizing and removing unpleasant odors, and is widely applied in factories, workshops, sewage treatment plants, and waste deodorization facilities. Common types include plasma deodorization devices, high-energy ion deodorization devices, and photo-hydrogen ion deodorization devices. The main principle of ion deodorization equipment is that, under the action of a high-voltage electric field, a large number of positive and negative oxygen ions are generated, which possess strong oxidizing properties. It can oxidize and decompose foul-smelling pollutants such as methanethiol, ammonia, hydrogen sulfide, ethers, and amines in an extremely short time, breaking the chemical bonds of organic volatile gases to ultimately produce stable and harmless small molecules like carbon dioxide and water, thereby achieving the purpose of air purification.
After the malodorous gases are introduced into this purification device using exhaust ventilation systems, the device utilizes high-energy UV light beams and ozone to carry out a combined decomposition and oxidation reaction on these gases, thereby converting them into low-molecular-weight compounds, water, and carbon dioxide, which are then discharged outside through exhaust ducts.