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SLLG033

Millipore

Millex® hydrophilic PTFE syringe filter

pore size 0.20 μm, diam. 33 mm, non-sterile

Synonym(s):

0.20 μm PTFE syringe filter, Millex-LG syringe filter, disposable syringe filter, syringe filter

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About This Item

UNSPSC Code:
41104922
eCl@ss:
32031690
NACRES:
NB.24

material

PTFE membrane
polypropylene housing

sterility

non-sterile

product line

Millex®

feature

holdup volume≤ 80 μL (after air purge)
hydrophilic

manufacturer/tradename

Millex®

parameter

45 °C max. temp.
8.6 bar max. inlet pressure (125 psi)

technique(s)

LC/MS: suitable
UHPLC-MS: suitable
UHPLC: suitable
analytical sample preparation: suitable
mass spectrometry (MS): suitable

H

27 mm

diam.

33 mm

filtration area

4.5 cm2

volume

100 mL

color

light blue

pore size

0.20 μm

input

sample type organic solution(s)
sample type aqueous solution(s)

bubble point

≥1.6 bar, air with water at 23 °C

fitting

female Luer-Lok® inlet
male Luer outlet slip

General description

Filter Code: LG
HPLC-certified for low levels of UV-absorbing extractables.

SLLG033NS replaces SLLGH25NS
SLLG033NB replaces SLLGH25NB
SLLG033NK replaces SLLGH25NK

Overview of Non-Sterile Millex Syringe Filters with Hydrophilic PTFE
  • Lowest extractables, optimizing background levels of sensitive analyses like UHPLC and LC-MS
  • Filtration of aqueous or organic solutions
  • Polypropylene housing material offers low levels of extractables and broad chemical compatibility

Applications:
Sample Filtration Prior to UHPLC, HPLC, LC-MS, and Mass Spec; Solvent Filtration; Filtration of Aqueous and Organic Solutions

Application

Replaced by SLLGH25, 0.20 m pore size, 33 mm diameter, Millex-LG hydrophilic PTFE membrane

Packaging

non sterile

Specifications

For general laboratory use only

Physical form

Color Code: Light Blue

Legal Information

Luer-Lok is a registered trademark of Becton-Dickinson & Co.
Millex is a registered trademark of Merck KGaA, Darmstadt, Germany

Certificates of Analysis (COA)

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Syringe membrane filter selection and validation methods to assess analyte loss due to membrane filter adsorption in pharmaceutical quality control (QC) testing.

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