Membrane Filter Press

What Is A Membrane Filter Press?

Compared to standard chamber filter presses, membrane filter presses incorporate a secondary squeezing step after the filtration process. Specifically, elastic membranes are installed on both sides of the filter plates; introducing compressed air or water causes the membranes to expand and exert additional pressure on the filter cake, resulting in a drier cake.

Furthermore, the arrangement of filter plates in a membrane filter press differs from that of a conventional filter press, consisting of an alternating sequence of membrane plates and chamber plates.

How Does a Membrane Filter Press Work?

Membrane filter presses incorporate a secondary squeezing stage following the conventional filtration process to produce a drier filter cake.

STEP 01

Feeding

Slurry is pumped into the filter chambers through the feed pump.

filtrate

STEP 02

Filtration

Solids are retained by the filter cloth, while filtrate passes through and flows out.

Diaphragm plate expansion

STEP 03

Membrane Squeezing

Compressed air or water expands the membrane plates to squeeze the filter cake again.

filter cake

STEP 04

Cake Discharge

The filter cake after the second pressing is drier and easier to discharge.

Membrane Filter Press Parameter

membrane filter press
ModelFilter
area
(m2)
Plate size (mm)
Cake thickness (mm)
Filter chamber volume (L)
Plate Quantity (pcs).
Filtration pressure (Mpa)
Motor Power(Kw)

Weight (Kg)
Dimensions
LxWxH(mm)
XMGY30/870-U30870*870≤3549823≤0.8430463880*1250*1300
XMGY40/870-U40870*870≤3562329≤0.8435934270*1250*1300
XMGY50/1000-U501000*1000≤3577627≤0.8443524270*1500*1400
XMGY60/1000-U601000*1000≤3594333≤0.8444804770*1500*1400
XMGY100/1000-U1001000*1000≤35160857≤0.8465556410*1500*1400
XMGY120/1000-U1201000*1000≤35194169≤0.8474667260*1500*1400
XMGY120/1250-U1201250*1250≤40239145≤0.85.5126006060*1800*1600
XMGY150/1250-U1501250*1250≤40291155≤0.85.5136206820*1800*1600
XMGY160/1250-U1601250*1250≤40311959≤0.85.5144707130*1800*1600
XMGY200/1500-U2001500*1500≤40380949≤0.811261207140*2200*1820
XMGY250/1500-U2501500*1500≤40472361≤0.811269307730*2200*1820
XMGY400/1500-U4001500*1500≤40761899≤0.8113150011260*2200*1820
XMGY1000/2000-U10002000*2000≤4019651141≤0.8157078018530*3000*2500

Why Choose a Membrane Filter Press?

Compared with a standard chamber filter press, membrane squeezing provides deeper dewatering and higher efficiency.

Lower Filter Cake Moisture Content

After the initial filtration phase, the diaphragm filter press uses its diaphragm plates to squeeze the filter cake, further expelling moisture and achieving a final moisture content of 30%–60%.

For High-Moisture Sludge

Standard chamber filter presses offer limited dewatering performance, whereas diaphragm filter presses are better suited for applications requiring drier filter cakes.

Easier Unloading The Filter Cake

Following diaphragm squeezing, the filter cake is more compact and structurally intact, making it easier to discharge—a feature particularly advantageous for automatic plate-shifting systems and continuous production operations.

Membrane Filter Press Test Video

Each filter press undergoes testing before shipment to ensure proper operation.

Factory Test Before Delivery

Before shipment, each membrane filter press is tested to check the hydraulic system, control cabinet, plate shifting operation, and complete machine running performance.

Membrane Filter Press Projects for Global Customers

Real filter press machines manufactured for customers in different countries and industries.

Filter Press FAQ

A membrane filter press incorporates a secondary pressing stage following the standard filtration process. Its membrane filter plates expand using compressed air or water pressure to further squeeze the filter cake; compared to a standard chamber filter press, this method helps reduce the moisture content of the filter cake.

Can a membrane filter press reduce the moisture content of the filter cake?

Yes. After filtration is complete, the membrane squeezing process can further remove moisture from the filter cake. The moisture content of filter cake in a conventional chamber filter press is 50-75%, while that in a diaphragm filter press is 30-60%.

The squeezing pressure depends on the material properties and process requirements. Compressed air or water can be used to expand the membrane. Typically, the membrane squeezing pressure is 1.2 MPa; our engineers will recommend the appropriate pressure based on your slurry type, required filter cake moisture content, and operating conditions.

Membrane filter presses are recommended when you require drier filter cakes and higher filtration efficiency. They are particularly suitable for applications involving high-moisture sludge, fine-particle slurries, viscous materials, mine tailings, chemical sludge, and industrial wastewater treatment.

To recommend a suitable model, please provide the following information: material to be filtered, solid content, treatment capacity, working hours per day, required cake moisture, site voltage, and whether automatic plate pulling, cloth washing, drip tray, or belt conveyor is required.

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