WHA30178793
Whatman® cellulose chromatography papers
17-chr, W × L 25 mm × 220 mm
Synonym(s):
Z753599
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About This Item
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material
cellulose membrane
sheets
grade
for chromatography
sterility
non-sterile
feature
17-chr
packaging
pk of 100
manufacturer/tradename
Whatman 3017-8793
Whatman Article No. 28419235 (US reference)
parameter
190 mm/30 min flow rate
W × L
25 mm × 220 mm
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General description
Whatman Grade 17 Chr Cellulose Chromatography Papers are highly absorbent cellulose papers for preparative paper chromatography, Western blotting & nucleic acid blotting. Thick cellulose chromatography paper with uniform wicking and capillary action.
Manufactured and tested specifically for preparative paper chromatography. Whatman Grade 17 Chr Cellulose Chromatography Papers are pure cellulose. Our cellulose is produced entirely from the highest quality cotton linters, with no additives of any kind. They are available in a wide variety of sizes - in both sheets and rolls.
Manufactured and tested specifically for preparative paper chromatography. Whatman Grade 17 Chr Cellulose Chromatography Papers are pure cellulose. Our cellulose is produced entirely from the highest quality cotton linters, with no additives of any kind. They are available in a wide variety of sizes - in both sheets and rolls.
Features and Benefits
- Wicking capability and uniformity of capillary action: important in chemical separations
- Durable: suitable for heavy loadings
- Flow rate: allows for very high flow rates (190 mm/30 min)
- Widely used: in both protein and nucleic acid blotting
Other Notes
Field of Use : For internal research use only. Products are not intended for diagnostic use or resale.
Legal Information
Whatman is a registered trademark of Cytiva
Certificates of Analysis (COA)
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Applied and environmental microbiology, 75(18), 5972-5980 (2009-07-28)
A Streptococcus mitis genomic DNA fragment carrying the SMT1224 gene encoding a putative beta-galactosidase was identified, cloned, and expressed in Escherichia coli. This gene encodes a protein 2,411 amino acids long with a predicted molecular mass of 268 kDa. The
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