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About This Item
Product Name
Millex™ filter for the Samplicity® G2 System, Nylon, pore size 0.45 μm, diam. 33 mm, non-sterile, hydrophilic
material
Nylon membrane
polypropylene housing
sterility
non-sterile
product line
Millex™
Samplicity®
feature
holdup volume≤ 80 μL (after air purge)
hydrophilic
manufacturer/tradename
Millex™
Samplicity®
parameter
45 °C max. temp.
8.6 bar max. inlet pressure (125 psi)
technique(s)
HPLC: suitable
UV/Vis spectroscopy: suitable
analytical sample preparation: suitable
diam.
33 mm
filtration area
4.5 cm2
volume
1.7 mL
color
purple
pore size
0.45 μm
input
sample type aqueous solution(s)
sample type organic solution(s)
bubble point
≥2.2 bar, air with water at 23 °C
Quality Level
fitting
female Luer-Lok® inlet connection
female Luer-Lok® inlet fitting
male Luer outlet slip
shipped in
ambient
Application
Features and Benefits
General description
• Samplicity G2 Filtration System enables vacuum driven filtration of up to 8 samples at once, directly into HPLC vials
• Millex Filters for the Samplicity G2 System provide adaptor funnels and Millex 33 mm filters
• Samplicity G2 System has lower ergonomic impact than manual syringe filtration
• Available in 0.20 µm and 0.45 µm pore sizes with Durapore PVDF, Millipore Express PLUS PES, or nylon membranes
Available in 2 Pack Sizes:
SKU ending with NB (-------NB): 250 per pack
SKU ending with NK (-------NK): 1000 devices (4x 250 per pack)
Applications:
HPLC; Filtration of viscous or particulate laden samples for HPLC
Other Notes
Packaging
Physical form
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Articles
Hydrophilic PTFE Millex® syringe filters ensure accurate dissolution testing and sample preparation for HPLC analysis.
Related Content
过滤是一种分离技术,可根据物理或化学性质浓缩或纯化物质。过滤可用于减少样品的复杂成分、提高粘性样品澄清度并减少背景信号,从而提高分析检测信噪比。
Filtration separates substances to reduce sample complexity and increase analyte purity, improving analytical results.
"Liquid chromatography mass spectrometry (LC-MS) and gas chromatography mass spectrometry (GC-MS) are being increasingly used in analysis of samples, not only in the biotechnology and pharmaceutical industries, but also more generally in the analysis, identification and quantitation of complex samples containing low levels of analytes. The advantages of LC-MS or GC-MS over other analytical techniques include high sensitivityand specificity for analyte detection and quantitation."
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