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Alumina Microfiltration Ceramic Membranes are high-performance inorganic filtration elements manufactured from high-purity α-alumina (Al₂O₃) through precision extrusion, advanced ceramic forming, and high-temperature sintering technology.
The membrane adopts a multi-layer asymmetric structure consisting of a porous support layer, transition layer, and precision separation layer. This optimized architecture combines excellent mechanical strength with high permeability, allowing stable operation under demanding industrial conditions while maintaining precise particle separation.
Designed for microfiltration (MF) applications, alumina ceramic membranes are available with pore sizes ranging from 0.1 μm to 5 μm, making them suitable for removing suspended solids, bacteria, fine particles, and emulsified substances from a wide variety of process liquids.
Compared with conventional polymeric membranes, alumina ceramic membranes provide significantly longer service life, superior chemical resistance, higher operating temperatures, and excellent cleaning performance, making them an ideal solution for continuous industrial filtration.
The asymmetric pore structure minimizes flow resistance while maintaining high separation efficiency, resulting in excellent permeate flux and lower operating costs.
Alumina ceramic membranes exhibit excellent resistance to:
They can operate reliably in highly corrosive industrial environments where polymer membranes may rapidly degrade.
Manufactured from dense ceramic materials, the membrane offers:
The robust ceramic structure withstands frequent backwashing and long-term continuous operation.
Unlike organic membranes, alumina ceramic membranes can operate at elevated temperatures and tolerate steam sterilization, making them suitable for demanding industrial processes.
Maximum recommended operating temperature:
≤350°C
The smooth ceramic surface reduces the adhesion of contaminants and allows efficient removal of deposited materials during cleaning.
The membrane supports:
allowing stable long-term performance with minimal flux decline.
Because the ceramic structure is highly resistant to chemical attack and mechanical wear, alumina microfiltration membranes typically offer a significantly longer operational lifetime than polymeric membranes, helping reduce replacement frequency and maintenance costs.
Standard microfiltration pore sizes include:
Custom pore sizes are available upon request for specific separation requirements.
| Parameter | Specification |
|---|---|
| Membrane Material | High-Purity α-Al₂O₃ |
| Filtration Type | Microfiltration (MF) |
| Pore Size Range | 0.1–5 μm |
| Membrane Structure | Asymmetric Multi-Layer Ceramic Membrane |
| Operating pH | 0–14 |
| Maximum Operating Temperature | ≤350°C |
| Burst Pressure | ≥6 MPa |
| Porosity | 30–35% |
| Available Length | 250–1500 mm |
| Available Channels | 1–241 |
| Cleaning Methods | Acid / Alkali / Oxidant / High-Pressure Backwash |
Compared with conventional polymeric microfiltration membranes, alumina ceramic membranes provide several significant advantages:
Their outstanding durability and reliable separation performance make them a preferred solution for continuous industrial filtration systems where membrane longevity and process stability are critical.
To meet different process requirements, we offer a wide range of customization options, including:
Our engineering team can recommend the most suitable membrane configuration based on your feed characteristics, operating conditions, and filtration objectives.
Looking for a reliable Alumina Microfiltration Ceramic Membrane solution?
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Alumina Microfiltration Ceramic Membrane Images |