
Slurry Filter XN-FT-1L
SKU: XN-FT-1L
Slurry Filter XN-FT-1L is a compact benchtop vacuum filtration unit designed for laboratory removal of hard particles from lithium-ion battery slurries. Built entirely in SUS304 stainless steel with a 1 L filtration chamber, it removes coarse contaminants larger than approximately 124 μm to protect downstream coating quality.
The unit is supplied with a 150-mesh standard screen — separate screens are provided for cathode and anode slurries — and accepts optional finer screens up to and including 1000-mesh on request. Vacuum reaches −80 kPa via an integrated air pump rated at 12 L/min, and the large screen area keeps pressure drop low for extended service life.
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Name: Slurry Filter XN-FT-1L
Equipment Type: Benchtop Vacuum Slurry Filtration Unit
Product Code: XN-FT-1L
Brand: Xnergy
Product Introduction:
Slurry Filter XN-FT-1L is a compact benchtop vacuum filtration unit designed for laboratory removal of hard particles from lithium-ion battery cathode and anode slurries. Built entirely in SUS304 stainless steel, the unit removes coarse contaminants larger than approximately 124 μm to prevent surface defects and coating non-uniformities in downstream electrode coating. A 1 L filtration chamber and a large screen area keep pressure drop low for extended service life.
Key Features:
High filtration accuracy down to approximately 124 μm
Separate filtration screens supplied for cathode and anode slurries
All-SUS304 stainless steel construction — corrosion-resistant, easy to clean
Large screen area minimizes pressure drop and extends service life
Standard 150-mesh screen; optional finer meshes (up to and including 1000-mesh) available on request
Integrated vacuum pump (12 L/min, −80 kPa)
Compact benchtop footprint (8.5 kg)
Technical Specifications:
| Parameter | Specification |
|---|---|
| Filtration Capacity | 1 L |
| Filtration Accuracy | Approximately 124 μm (removes hard particles ≥ 124 μm) |
| Standard Screen | 150 mesh (separate screens supplied for cathode and anode slurries) |
| Optional Screens | Up to and including 1000-mesh on request |
| Vacuum Pressure (absolute) | −80 kPa |
| Air Pump Flow Rate | 12 L/min |
| Wetted-Part Material | SUS304 stainless steel |
| Power Supply | Configurable according to local electrical standards |
| Rated Power | 100 W |
| Dimensions (L × W × H) | 270 × 120 × 360 mm |
| Weight | 8.5 kg |
Application Areas:
XN-FT-1L is suitable for:
Removing hard particles and coarse contaminants from lithium-ion battery cathode slurries before coating
Removing hard particles from anode slurries before coating
Laboratory and R&D slurry preparation workflows where coating defects from oversize particles must be minimized
Maintenance:
Clean the equipment regularly with a soft cloth lightly moistened with alcohol
Lubricate moving parts periodically to ensure smooth operation
If the equipment is not used for an extended period, clean the moving surfaces and apply a protective anti-rust coating
Periodically inspect screws, nuts, pins, and other fasteners to prevent loosening
Safety Notes:
Do not place hands or other body parts near moving components or work-zone areas during operation
Operation should be performed by a single trained operator to avoid accidental injury
Disassembly should only be performed by qualified technicians
Specifications are provided for reference and may be adjusted to suit specific process requirements. Custom mesh sizes are available on request.
Note: Specifications listed above are typical and for reference only. Actual filtration performance depends on slurry viscosity, solid content, particle size distribution, and operating conditions. XN-FT-1L offers double the per-batch filtration capacity of the smaller XN-FT-500mL while keeping the same filtration accuracy and footprint width, making it the right choice when single-batch slurry volumes exceed 500 mL — typical when feeding pilot-scale slot-die coating from a XN-PVM-2L or larger planetary mixer. Filtered slurry then feeds the Slot-Die Coating System XN-SDC for precision wet-film coating. For active material catalogs whose slurries benefit from this filtration step, see Cathode Materials and Anode Materials.




