Customization: | Available |
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Application: | Mining Industry |
Material: | Alumina Ceramic |
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Ceramic Filter Elements for concentrate filtration
HT series ceramic plates are made of AL203 or SIC materials with high mechanical strength, excellent corrosion resistance and good wear resistance. After adding some inorganic binders and pore-forming agents, hydraulic gradient dry pressing is used for precision processing, and then the aluminum oxide membrane with micron pore size is sprayed. After secondary sintering at a high temperature of 1500~1800ºC, it becomes a porous ceramic plate with a double-sided filter layer and a pressure resistance of up to 8BARD.
1. High skeleton density, high membrane strength, pressure resistance, and corrosion resistance, not easy to damage.
2. High porosity and large production capacity; high filtration accuracy and low vacuum energy consumption; fine material and strong plasticity.
3. There are many regeneration methods, which can be cleaned with high temperature and high pressure, organic solvents, etc., with good regeneration effects and greatly extended service life.
Filtration flux (clean water pressure 0.1Mpa): | 800-1000L·centipoise/h·m2 | |
Air pressure backwash test pressure (wet state): | ≥0.1Mpa | |
Operation backwash pressure: | ≤0.1Mpa | |
Ultrasonic combined chemical cleaning pressure: | ≤0.1Mpa | |
Assembly precision: | Parallelism with the plate membrane surface: | ±0.1mm |
Height with the plate membrane surface: | 8mm±0.1mm | |
Disc precision: | Assembly hole midpoint and diagonal error: | ≤2mm |
Error between each plate: | 3mm±1mm | |
Filter membrane wear resistance time: (Not damaged by scrapers or other hard objects) |
≥7000h | |
Porosity: | ≥42% | |
Flexural strength: | ≥30Mpa |
Ceramic filter plates are the core components of ceramic filters, suitable for industrial solid-liquid separation and material dehydration. They are widely used in mining, coal, fine chemicals, papermaking, pharmaceuticals, chemical fibers, food, environmental protection and other industries.