Categories

$0 shipping Find out more
Free shipping is available for orders over $300
Payment methods Find out more
Available payment methods:
PayPal, Credit or Debit Card
Delivery methods Find out more
Courier cost $17

SKU: 342003

250 mL Vacuum Filtration, 0.45 μm, PES, Sterile, 1/pk, 12/pcs

Nest

$97,80 ($97,80 net)

Out of stock

Product Features:
1. High flow rates and high throughput
2. Precise graduation on the bottle wall
3. Various specifications:Membrane materials include: PES, PVDF、CA、MCE ; Volume: 250ml、500ml and 1000ml
4. Low protein binding
5. Gamma-ray sterilization
6. Filter diameter: 250ml volume for the 50mm membrane diameter 500ml volume for the 90mm membrane diameter.
7. The design of hose connector is adaptable to various hose diameters.
8. Light weight and firm outer wall structure, easy to grasp
8. Light weight and firm outer wall structure, easy to grasp

Ensure fast and efficient filtration in your laboratory with our 250 mL Vacuum Filtration unit, designed for routine sterile filtration of biological and chemical samples. Fitted with a 0.45 μm polyethersulfone (PES) membrane, this unit offers rapid flow rates and reliable performance, making it ideal for clarifying buffers, media, and other aqueous solutions.

The unit features a durable, transparent polystyrene funnel with clear graduation markings for accurate volume measurement and ease of use. The low protein-binding PES membrane helps preserve sample quality and consistency in results.

Each unit is sterilized by gamma irradiation and individually packaged to maintain sterility and avoid contamination. Compatible with standard lab vacuum systems, this filtration unit integrates seamlessly into your workflow.

Key Features:

Volume: 250 mL

Membrane: PES, 0.45 μm pore size

Sterile: Yes (gamma-irradiated)

Packaging: 1 unit per pack, 12 packs per case

Operating conditions: 4–37°C; 0.03–0.06 MPa pressure range

Inspect the packaging for damage before use. This versatile and efficient filtration solution is ideal for everyday lab applications requiring dependable performance.