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FMC-96 series baghouse dust collector

FMC type baghouse dust collector is mainly composed of an upper box body, a middle box body, a lower box body (ash hopper), a ash cleaning system and a ash removal mechanism.

Description
The baghouse dust collector developed and manufactured by our company has the advantages of various kinds of dust collectors such as chamber back-blowing and pulse injection.
Overcomes the shortcomings of insufficient kinetic energy intensity during chamber back-blowing and simultaneous filtration and dust cleaning, thus increasing the adaptability of the bag filter and improving the dust collection efficiency.
It is suitable for trapping fine, dry and non-fibrous dust.
Parameter
Capacity    Model DYFMC-96 SERIES
96-5 96-6 96-7 96-8 96-9 96-2x5 96-2x6 96-2x7 96-2x8 96-2x9 96-2x10
Air volume  (m³/h) 33400 40100 46800 53510 60100 66900 80700 94100 107600 12100 134500
Filter area (㎡) 465 557 650 744 836 929 1121 1308 1494 1681 1868
Number of dust collector (piece) 5 6 7 8 9 10 12 14 16 18 20
Number of bags per room (piece) 96
Total number of filter bags(piece) 480 576 672 768 864 960 1152 1344 1536 1728 1920
Compressed air consumption (Nm³*min) 0.9(1.6) 1.2(2.5) 1.6(3.0)
Total weight  (t) 12.2 15 17 18.8 21.3 25.3 30.2 35.5 40.3 45.4 50.4
Filter bag wind speed(m/min) 1.2
Understand negative pressure(Pa) ≤ 6000
Dust collector resistance(Pa) < 1500
Outlet concentration(mg/nm³) < 50
Dust removal efficiency(%) >99.9

 

 

Major equipment

1

Application

Pharmaceutical plant dust removal, stone plant dust removal, asphalt mixing station dust removal, coal-fired boiler plant dust removal, cement plant dust removal, lime plant dust removal, steel plant dust removal, coal washing plant dust removal, fertilizer plant dust removal, biological boiler plant dust removal, and other building materials, metallurgy, machinery, chemical industry and refractory industries.

2

Advantage

(1) High reliability design to ensure long-term stable operation of bag dust collector with main equipment and low maintenance workload;

(2) optimizing inlet and outlet design is conducive to uniform airflow distribution.

(3) Air leakage prevention design ensures minimum leakage rate of bag filter.

(4) All steel split structure design is convenient for equipment transportation and installation.

(5) low operating cost. Optimizing the design of process parameters is conducive to the stable operation of bag filter with low resistance, high efficiency, reducing energy consumption of the system, and effectively reducing the loss of filter bags.

Henan Dianyan New Energy Technology Co., Ltd.,

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