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Merck
CN

FSLW03700

PTFE Membrane Filter, 3.0 μm Pore Size

greener alternative

Fluoropore®, filter diam. 37 mm, hydrophobic

Synonym(s):

Fluoropore® Membrane Filter

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About This Item

UNSPSC Code:
40161507
NACRES:
NB.24
eCl@ss:
32031602
Pore size:
3.0 μm pore size, 85 % porosity
Material:
PTFE membrane, plain filter, white filter
Feature:
hydrophobic
Diam.:
37 mm
Sterility:
non-sterile
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material

PTFE membrane, plain filter, white filter

sterility

non-sterile

feature

hydrophobic

manufacturer/tradename

Fluoropore®, Millipore

sustainability

Greener Alternative Product

parameter

130 °C max. temp., 20 L/min-cm2 air flow rate, 286 mL/min-cm2 water flow rate

diam.

37 mm

filter diam.

37 mm

thickness

150 μm

gravimetric extractables

0.5%

matrix

Fluoropore®

pore size

3.0 μm pore size, 85 % porosity

bubble point

≥0.1 bar, air with methanol at 23 °C

greener alternative category

shipped in

ambient

General description

Fluoropore® membrane is hydrophobic and has polytetrafluoroethylene (PTFE) polymer bonded to high-density polyethylene. This membrane with chemical compatibility and consistency may be useful in sample preparation for ultraviolet (UV) spectroscopy, air monitoring, clarifying acids, bases, and solvents.
We are committed to bringing you Greener Alternative Products, which have been re-engineered to enable more sustainable research solutions. The inner & outer boxes containing the membrane discs are made from bio-circular material allocated using the ISCC mass balance approach. Click here for more information.

Application

Fluoropore® Membrane Filter has been used as a filter in the National Institute for Occupational Safety and Health (NIOSH) aerosol sampler for bioaerosols collection.

Fluoropore Membrane Filter is also suitable for air monitoring

Features and Benefits

  • Biologically and chemically inert.
  • High porosity yields high flow rates.

Legal Information

Fluoropore is a registered trademark of Merck KGaA, Darmstadt, Germany


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Storage Class

10-13 - German Storage Class 10 to 13



Certificates of Analysis (COA)

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Angela R Lemons et al.
Journal of visualized experiments : JoVE, (135) (2018-05-22)
Traditional methods of identifying fungal exposures in occupational environments, such as culture and microscopy-based approaches, have several limitations that have resulted in the exclusion of many species. Advances in the field over the last two decades have led occupational health



Global Trade Item Number

SKUGTIN
FSLW0370004053252511615