Dust Extraction is the latest type of dust removal equipment, with dust removal efficiency up to 99% in many industrial fields with large dust.
Tyre Diameter:>0.3 μm
Treated Air:2160-21600m³/h
Filter Area:8-90m²
Pulse dust remover is a new type of high-efficiency pulse dust remover improved on the basis of bag dust remover. It combines the advantages of various pulse jet dust removers with chamber back blowing, overcomes the disadvantages of insufficient chamber dust removal intensity and uneven distribution of inlet and outlet air, expands the application range, and is widely used in the dust removal and purification of industrial and mining enterprises, such as metallurgy, building materials, machinery, chemical industry, mining, etc.
The body structure of the bag filter is mainly composed of the upper box, the middle box, the lower box (ash hopper), the dust cleaning system and the dust discharge mechanism.
According to the shape of the filter bag, it is divided into: flat bag (trapezoid and flat shape) and round bag (cylindrical shape).
According to the way of air in and out, it can be divided into: bottom air inlet and upper air outlet, upper air inlet and lower air outlet, and direct current type (limited to flat flat bags).
According to the filter method of the bag, it is divided into: external filter type and internal filter type.
Fibers for filter materials include cotton fibers, wool fibers, synthetic fibers, and glass fibers.
When the dust-laden gas enters the ash hopper from the air inlet pipe at the lower part of the dust collector through the deflector, the coarse dust will fall into the ash hopper due to the collision of the deflector and the reduction of the gas velocity, and the rest of the fine dust will fall into the ash hopper with the gas. Entering the filter bag room, due to the inertia, diffusion, barrier, hooking, static electricity and other effects of the filter fiber and fabric, the dust is blocked in the filter bag, and the purified gas escapes out of the bag and is discharged through the exhaust pipe. The ash accumulated on the filter bag is removed by gas backwashing, and the removed dust goes down to the ash hopper, and is discharged to the ash conveying device through the double-layer ash unloading valve. The dust accumulated on the filter bag can also be removed by blowing pulsed airflow, so as to achieve the purpose of dust removal, and the removed dust is discharged by the dust discharge device.
Products Advantages
The dust removal efficiency is high, generally above 99%. The dust concentration in the outlet gas of the dust collector is within tens of mg/m3, and it has a high classification efficiency for fine dust with submicron particle size.
The range of air volume is wide, the small one is only a few cubic meters per minute, and the large one can reach tens of thousands of cubic meters per minute. It can be used for dust removal of flue gas in industrial furnaces and kilns to reduce the emission of air pollutants.
Simple structure, easy maintenance and operation.
Under the premise of ensuring the same high dust removal efficiency, the cost is lower than that of the electrostatic precipitator.
When using glass fiber, polytetrafluoroethylene, P84 and other high temperature resistant filter materials, it can operate under high temperature conditions above 200°C.
Not sensitive to the characteristics of dust, not affected by dust and resistance.
When the dust-laden gas enters the ash hopper from the air inlet pipe at the lower part of the dust collector through the deflector, the coarse dust will fall into the ash hopper due to the collision of the deflector and the reduction of the gas velocity, and the rest of the fine dust will fall into the ash hopper with the gas. Entering the filter bag room, due to the inertia, diffusion, barrier, hooking, static electricity and other effects of the filter fiber and fabric, the dust is blocked in the filter bag, and the purified gas escapes out of the bag and is discharged through the exhaust pipe. The ash accumulated on the filter bag is removed by gas backwashing, and the removed dust goes down to the ash hopper, and is discharged to the ash conveying device through the double-layer ash unloading valve. The dust accumulated on the filter bag can also be removed by blowing pulsed airflow, so as to achieve the purpose of dust removal, and the removed dust is discharged by the dust discharge device.
Model | Treated Air (m³/h) | Nozzle Blowing Air Volume (m/nin) | Number of Filter Bags | Filter Area (㎡) | Weight (kg) | Dimension (mm) |
DMC24 | 2160-4320 | 0.07-0.15 | 24 | 18 | 914 | 1100*1910*3610 |
DMC36 | 3250-6480 | 0.11-0.22 | 36 | 27 | 947 | 1500*1910*3610 |
DMC48 | 4320-8630 | 0.15-0.3 | 48 | 36 | 1350 | 1900*1910*3610 |
DMC60 | 5400-10800 | 0.18-0.37 | 60 | 45 | 1545 | 2300*1910*3610 |
DMC72 | 6450-12900 | 0.22-0.44 | 72 | 54 | 1777 | 2700*1910*3610 |
DMC84 | 7550-15100 | 0.25-0.5 | 84 | 63 | 1900 | 3100*1910*3610 |
DMC96 | 8650-17300 | 0.29-0.58 | 96 | 72 | 2174 | 3500*1910*3610 |
DMC108 | 9720-19400 | 0.32-0.64 | 108 | 81 | 2319 | 3900*1910*3610 |
DMC120 | 10800-21600 | 0.36-0.72 | 120 | 90 | 2510 | 4300*1910*3610 |
The above is only the parameters of a pulse dust collector and the specific parameters will vary according to the customized model. | ||||||
Dust extraction equipment is primarily used to remove dust and particulate matter from industrial processes, ensuring clean air and a safe working environment. It is widely applied in various industries such as metallurgy, building materials, machinery, chemicals, and mining to capture and filter dust generated during production, thereby reducing air pollution and protecting equipment from damage caused by dust accumulation.
Key Requirements
High dust removal efficiency (typically over 99%) to meet environmental emission standards.
Adaptability to handle different particle sizes (e.g., >0.3 μm) and air volumes (2160–21600 m³/h).
Durable filter materials (e.g., glass fiber, PTFE) for high-temperature resistance (up to >200°C if needed).
Simple structure for easy maintenance and low operational costs.
Reliable dust discharge mechanisms to prevent re-entrainment of collected particles.