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GNWP04700

Millipore

Nylon Membrane Filter, 0.2 μm Pore Size

Millipore, filter diam. 47 mm, hydrophilic

Synonym(s):

Hydrophilic Nylon net membrane filter, Nylon Net Filter

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About This Item

UNSPSC Code:
40161507
eCl@ss:
32031602
NACRES:
NB.24

material

Nylon membrane
plain filter
white filter

description

0.2 um pore size, hydrophilic nylon membrane, 47 mm diameter

sterility

non-sterile

feature

hydrophilic

manufacturer/tradename

Millipore

filter diam.

47 mm

thickness

170 μm

pore size

0.2 μm pore size

bubble point

≥2.8 bar, air with water at 23 °C

shipped in

ambient

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Application

  • Sterilizing filtration†
  • Bioassays
  • Solvent filtration
  • PFAS Sample filtration

Nylon Net Filter has been used in the filtration of:
  • extracts of Caulobacter crescentus for metabolomics studies
  • Carissa carandas extracts before high-performance liquid chromatography (HPLC)
  • buffers for HPLC

Features and Benefits

  • Nylon filters are available in a wide range of pore sizes.
  • Resistant to aggressive solvents.
  • Compatible with a broad range of solvents.
  • Applicable for clarification of particles and solvent filtration.

Other Notes

Directions for Use

  • Organism Retention: Microorganism
  • Mode of Action: Filtration (size exclusion)
  • Application: General laboratory filtration
  • Intended Use: Retention or removal of biological contaminants
  • Instructions for Use: Sterilizing filtration of a liquid through a membrane with a 0.2 μm (or smaller) pore size effectively removes biological contaminants, including bacteria, mold and yeast
  • Storage Statement: Store in dry location
  • Disposal Statement: Dispose of in accordance with applicable federal, state and local regulations.


Certificates of Analysis (COA)

Search for Certificates of Analysis (COA) by entering the products Lot/Batch Number. Lot and Batch Numbers can be found on a product’s label following the words ‘Lot’ or ‘Batch’.

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Ling Fu et al.
Nature protocols, 15(9), 2891-2919 (2020-07-22)
Cysteine is unique among all protein-coding amino acids, owing to its intrinsically high nucleophilicity. The cysteinyl thiol group can be covalently modified by a broad range of redox mechanisms or by various electrophiles derived from exogenous or endogenous sources. Measuring

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