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Low temperature plasma deodorization equipment is an environmentally friendly device that utilizes the interaction of high-energy electrons, free radicals, and other active particles with pollutants in exhaust gas to decompose pollutant molecules in a short period of time, in order to achieve the goal of degrading pollutants.
Low temperature plasma deodorization equipment is an environmentally friendly device that utilizes the interaction of high-energy electrons, free radicals, and other active particles with pollutants in exhaust gas to decompose pollutant molecules in a short period of time, in order to achieve the goal of degrading pollutants.
Firstly, when the exhaust gas enters the equipment through the uniform flow plate filter cotton, it is discharged at high voltage and high frequency by the equipment, instantly generating a high voltage of 15000 volts to 20000 volts, which breaks down the exhaust gas. During this stage, long-chain and multi chain waste gas molecules have weaker bond energies and weaker binding forces. It is easy to break through chemical bonds and become small molecule compounds, which is the first stage of purification.
Secondly, water molecules and oxygen molecules entering the equipment with exhaust gas are broken down by high pressure, generating strong oxidizing groups such as hydroxyl groups and ozone molecules. These strong oxidizing groups come into full contact with waste gas molecules for oxidation, accelerating the reaction process. The entire reaction is clean, the energy utilization rate is high, and the purification efficiency is very high.
The plasma functional segment can stimulate the energy of pollutants, promote the breaking and recombination of molecular bonds of long-chain and multi chain pollutant molecules, and degrade difficult to treat pollutants into easier to treat low-carbon pollutants.
From the plasma reaction process, it can be seen that electrons first obtain energy from the electric field, and transfer the energy to pollutant molecules through excitation or ionization. Those pollutant molecules that obtain energy are excited, while some molecules are ionized, thus becoming active groups. Then these active groups collide with oxygen and between active groups to generate stable products and heat.
In addition, high-energy electrons can also be captured by substances with strong electron affinity such as halogens and oxygen, becoming negative ions. These negative ions have excellent chemical activity and play an important role in chemical reactions.
In the low-temperature plasma generated by dielectric barrier discharge, the electron energy is high and can interact with almost all odorous gas molecules;
Fast response, not limited by gas velocity, low gas resistance, mature process;
By using anti-corrosion materials, the electrode does not come into direct contact with the exhaust gas, fundamentally solving the problem of equipment corrosion;
Only electricity is needed, the operation is simple, there is no need to send dedicated personnel to guard, and it basically does not occupy labor costs;
The device starts and stops very quickly, can be used and turned on as needed, and is not affected by temperature.
Municipal facilities such as garbage and sewage treatment plants, as well as industrial sites such as pharmaceutical factories, paint factories, paint factories, leather factories, petrochemical factories, pesticide factories, pharmaceutical factories, printing factories, paper mills, feed processing factories, etc.
Firstly, when the exhaust gas enters the equipment through the uniform flow plate filter cotton, it is discharged at high voltage and high frequency by the equipment, instantly generating a high voltage of 15000 volts to 20000 volts, which breaks down the exhaust gas. During this stage, long-chain and multi chain waste gas molecules have weaker bond energies and weaker binding forces. It is easy to break through chemical bonds and become small molecule compounds, which is the first stage of purification.
Secondly, water molecules and oxygen molecules entering the equipment with exhaust gas are broken down by high pressure, generating strong oxidizing groups such as hydroxyl groups and ozone molecules. These strong oxidizing groups come into full contact with waste gas molecules for oxidation, accelerating the reaction process. The entire reaction is clean, the energy utilization rate is high, and the purification efficiency is very high.
The plasma functional segment can stimulate the energy of pollutants, promote the breaking and recombination of molecular bonds of long-chain and multi chain pollutant molecules, and degrade difficult to treat pollutants into easier to treat low-carbon pollutants.
From the plasma reaction process, it can be seen that electrons first obtain energy from the electric field, and transfer the energy to pollutant molecules through excitation or ionization. Those pollutant molecules that obtain energy are excited, while some molecules are ionized, thus becoming active groups. Then these active groups collide with oxygen and between active groups to generate stable products and heat.
In addition, high-energy electrons can also be captured by substances with strong electron affinity such as halogens and oxygen, becoming negative ions. These negative ions have excellent chemical activity and play an important role in chemical reactions.
In the low-temperature plasma generated by dielectric barrier discharge, the electron energy is high and can interact with almost all odorous gas molecules;
Fast response, not limited by gas velocity, low gas resistance, mature process;
By using anti-corrosion materials, the electrode does not come into direct contact with the exhaust gas, fundamentally solving the problem of equipment corrosion;
Only electricity is needed, the operation is simple, there is no need to send dedicated personnel to guard, and it basically does not occupy labor costs;
The device starts and stops very quickly, can be used and turned on as needed, and is not affected by temperature.
Municipal facilities such as garbage and sewage treatment plants, as well as industrial sites such as pharmaceutical factories, paint factories, paint factories, leather factories, petrochemical factories, pesticide factories, pharmaceutical factories, printing factories, paper mills, feed processing factories, etc.
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