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Dongguan Blue Green Environmental Protection Technology Co., Ltd

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    1300563052@qq.com

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    13652558745

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    No. 32, Songshui Road Horizontal Section, Horizontal Village, Dalang Town

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Supply Fujian plasma photolysis exhaust gas deodorization purifier

NegotiableUpdate on 03/05
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Overview
Model: LLUV Treatment Concentration: 200 Treatment Airflow: 10000 Ignition Temperature: 25 ℃ Airspeed: 2m/s
Product Details

Overview of Blue Green Brand UV Cold Combustion Deodorization Equipment

LLUVThe series of ultraviolet cold combustion deodorization equipment is an advanced technology independently developed by our company, which can efficiently and quickly remove volatile organic compounds(VOC). Deodorization efficiency can reach99.5%The deodorization effect greatly exceeds the national emission standards for odorous pollutants(GB14554-93)It has the characteristics of strong adaptability, low operating cost, no need for pretreatment, and small equipment footprint. UV cold combustion deodorization equipment is widely used in various pollution source odorous gases such as refineries, rubber plants, chemical plants, pharmaceutical plants, sewage treatment plants, garbage transfer stations, etc. It is particularly suitable for removing benzene and deodorizing paint exhaust.

Working principle of UV cold combustion deodorization complete equipment

The odorous gas is input into the purification equipment of this odor treatment device through the exhaust equipment,Purification equipment utilizes high energyUVSynergistic decomposition and oxidation reaction of odorous gases by ultraviolet beam and ozone,Decompose odorous substances into low molecular weight compounds, water, and carbon dioxide, and then exhaust them outdoors through exhaust pipes.

Introduction to the complete set of equipment technology for ultraviolet cold combustion deodorization

According to the National Standards of the People's Republic of China-Emission Standards for Odor PollutionGB14554-93Odor is defined as any gas substance that stimulates the sense of smell and causes discomfort and damage to the living environment. It is necessary to effectively control odors in order to protect and improve the hygiene quality of various treatment sites and surrounding environments, reduce secondary pollution to the air.

At present, the main methods for treating odors both domestically and internationally include physical methods, chemical methods, and biological methods, including adsorption, direct combustion, catalytic combustion, chemical oxidation, biological filters, and other treatment methods. These control technologies cannot be compared to this deodorization device product in terms of odor treatment effectiveness, engineering investment, operating costs, self-control level, land occupation size, and the presence of secondary pollution.

TiO2The catalytic activity of photocatalysis greatly affects the rate of photocatalytic reactionsTiO2The photocatalytic activity is mainly affected byTiO2The influence of crystal structure and particle size. anataseTiO2The catalytic activity is high. As the particle size decreases, the probability of simple recombination between electrons and holes decreases, and the photocatalytic activity increases. In addition, porosity, average pore size, particle surface state, purity, and other factors also have a certain impact on its photocatalytic activity. In order to improve the efficiency of photocatalytic degradationTiO2Evolution and modification of photocatalysts, such as the development of nanomaterialsTiO2, PreparationTiO2Composite semiconductors, metal ion doping, dye photosensitization, etc. Various advanced methods can also be used to prepare itTiO2Catalysts are used to enhance the activity of photocatalysts.

Utilizing high-energy ozoneUVThe ultraviolet beam decomposes oxygen molecules in the air to produce free oxygen, also known as reactive oxygen species. Due to the imbalance of positive and negative electrons carried by free oxygen, aerobic molecules combine to produce ozone.UV+O2Oone+O*(Reactive oxygen species)O+O2O3(Ozone), as is well known, has a strong oxidizing effect on organic matter and has an immediate effect on removing odorous gases and other irritating odors.

Utilize high energyUVLight beam breaks down bacterial molecular bonds in odorous gases, disrupting bacterial nucleic acids(DNA)Then, ozone is used for oxidation reaction to achieve deodorization and kill bacteria.


Dongguan Blue Green Environmental Protection Technology Co., Ltd. is a professional manufacturer of complete sets of ultraviolet cold combustion deodorization equipment. Welcome to inquire!