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Ceramic Filter

Ceramic Filter
Product Introduction
A vacuum dewatering filter relying on microporous ceramic
Filtering Area
1~150m2
Product Improvement
Microporous ceramic as filtering medium saves cost by 90%

Advantages

  • High vacuum degree (vacuum degree -0.09~-0.098MPa), low moisture of cake

  • High filtration precision, solid content of filtrate<50ppm, which can be recycle used in the system.

  • Energy saving up to 90%, low energy consumption, low running cost

  • Filter cake cleaning system is installed

  • PLC and computer integrate with automatic valve control; high degree of automation and low labor intensity

  • Compact structure; small area taken; convenient maintenance

  • Advanced drainage system ensures application in any running conditions

Work Principle

Ceramic Filter

Pulp absorbing area: filter plate immersed in the pulp while in operation produces a surface absorption of filter cake, with the action of capillarity and integrated with vacuum pressure. Filtrate enters distributing valve and drainage tank through filter plate.

Spraying zone: filter cake receive spray washing after discharged from the slime hopper

Drying zone: continuous dewatering for filter cake is conducted with the action of high vacuum force.

Discharging zone: scraper will automatically discharge materials once entering the vacuum-free condition

Back Flushing: Service water or filtrate enters the ceramic plate through distributing valve and cleaning the blocked manhole. Cleaning with ultrasonic and low density acid after ceramic plate is used for one period to maintain the efficient service life of ceramic plate.

Product Structure

Ceramic Filter

Ceramic filter is mainly composed of roller system, stirring system, feeding& discharge system, vacuum system, filtrate discharge system, scraping system, washing system, combined cleaning (ultrasonic cleaning, automatic mixing acid cleaning) system, automatic control system, tank body and frames.

It can be widely used in concentrate and tailings dewatering of mining non-ferrous metals, rare metals, ferrous metal, and nonmetals. Dewatering of oxide, electrolytic slag, leaching residue, slag in chemical industry, sewage and mud disposal engineering and so on. The particle size of the materials can be realized from -200 to -450 meshes.

Ore TypesParticle Diameter DistributionFeeding ConcentrationCapacity kg.(m2h)-1Water Content of Filter Cake%
Gold concentrate-200~-325 mesh50~60900~15006.5~11.5
Gold tailings-200~-400 mesh45~60400~60013~16
Copper concentrate-200~-325 mesh45~60600~9006.5~12
Iron concentrate-200~-325 mesh40~60850~15006~10
Zinc concentrate-200~-325 mesh50~60750~9006.5~12
Lead concentrate-200~-400 mesh50~65650~80010~12
Bauxite-200~-325 mesh50 ~60350~45010.5~12
Lead and zinc tailings-200~-325 mesh50~65350~55012~16
Cyanide residue-325~-450 mesh50~60350~55021~24
Sulfur concentrate-200 mesh 80%50~65350~7908~12
Nickel concentrate-200~-325 mesh55~60300~60010~12
Coal concentrate-200 mesh 80%50~65550~93018~20
Zinc oxide-200 mesh 75%55 ~65620~12008~12
Fluorite powder-200 mesh 60%55~65750~9008~12

Technical Parameters

Model Filter Area (m2)

Number of Filter Disc (Circle)

Number of Filter Plate (Piece) Tank
Volume
(m3)
Installed
Power
(kW)
Operation
Power
(kW)
Main Frame
(LXWXH) (m)
TC-1 1 1 12 0.21 3.5 2.0 1.6X1.4X1.5
TC-4 4 2 24 1.0 7.0 3.0 2.4X2.5X2.1
TC-6 6 2 24 1.2 7.0 6.0 2.4X2.9X2.5
TC-9 9 3 36 1.7 9.0 7.0 2.7X2.9X2.5
TC-12 12 4 48 2.2 11.0 7.5 3.0X2.9X2.5
TC-15 15 5 60 2.7 11.5 8.0 3.3X3.0X2.5
TC-21 21 7 84 4.0 13.5 9.0 4.6X3.0X2.6
TC-24 24 8 96 4.5 16.5 10.5 4.9X3.0X2.6
TC-27 27 9 108 5.0 17.0 11.0 5.2X3.0X2.6
TC-30 30 10 120 5.5 17.5 11.5 5.5 X 3.0 X 2.6
TC-36 36 12 144 7.0 23.0 16.0 6.6X3.0X2.6
TC-45 45 15 180 8.5 25.0 19.0 7.5X3.0X2.6
TC-60 60 15 180 12.5 33.0 22.0 7.5X3.3X3.0
TC-80 80 20 240 16.2 40.0 24.0 9.0X3.3X3.0
TC-102 102 17 204 18.5 53.0 35.0 8.8X3.6X3.3
TC-120 120 20 240 20 60.0 40.0 9.7X 3.6X 3.3
TC-150 150 25 300 24 75.0 47.0 11.2X3.6X3.3

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