Basic parameters:
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┃ Dimensions ┃ 93 5X690X650fMM) ┃
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┃ Voltage requirement ┃ 220V 50HZ ┃
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┃ Power ┃ 300W ┃
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┃ Processing air volume ┃ 2000m3/H ┃
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┃ Weight ┃ 75KG ┃
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┃ Chassis material ┃ Carbon steel ┃
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┃ Air outlet size ┃ 6 inches ┃
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1、 Product Overview
YS-D laser smoke purifier adopts unique low-temperature plasma technology to adsorb and decompose one carbon
The latest process technology design, adopting standard module design and other advantages, is a dry processing method
Purification equipment for light, smoke, and organic waste gases. It does not require regeneration of raw materials and does not require dedicated personnel to handle it,
No secondary pollution, easy replacement and maintenance, low wind resistance of low-temperature plasma products, safe
Easy to install, can be grouped and manufactured according to customer on-site environmental requirements, convenient for transportation and installation. device
Compact structure, low investment, easy operation, it is currently an advanced equipment for processing laser dust.
2、 Product Usage
YS-D laser soot purifier is mainly used for laser cutting, laser engraving, and laser
The materials produced by marking, laser welding and processing organic glass, rubber sheets, fabrics, wooden boards, etc
Toxic and harmful industrial waste gas.
3、 Working principle
The YS-D laser soot purifier adopts a pulse high-voltage high-frequency plasma power supply and a toothed plate discharge
An electrical device that generates high-intensity, high concentration, and high-energy reactive free radicals in milliseconds
Within a certain amount of time, harmful waste gas molecules undergo an instantaneous oxidation-reduction reaction, which removes most of the pollutants from the waste gas
Decompose pollutants into easily treatable substances such as carbon dioxide and water.
Utilizing high adsorption capacity to continuously treat untreated pollutants and generated substances in plasma
Catalytic oxidation reaction is carried out to purify harmful exhaust gases in multiple stages and ultimately meet emission standards.
The innovative structural design maximizes the effectiveness of the low-temperature plasma generation device
Improve efficiency to meet the design requirements of small footprint, light weight, low energy consumption, and high efficiency.