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A prerequisite for successful work with glass filters is the selection of the right porosity. It is important to select a filter whose largest pore size is slightly below the grain size of the smallest particles still to be separated.
Material | Borosilicate Glass (3.3) |
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For Use With (Application) | Suitable for vacuum filtration with a maximum resulting pressure difference of 1 bar |
A prerequisite for successful work with glass filters is the selection of the right porosity. It is important to select a filter whose largest pore size is slightly below the grain size of the smallest particles still to be separated.
Material | Borosilicate Glass (3.3) |
---|---|
For Use With (Application) | Suitable for vacuum filtration with a maximum resulting pressure difference of 1 bar |
A prerequisite for successful work with glass filters is the selection of the right porosity. It is important to select a filter whose largest pore size is slightly below the grain size of the smallest particles still to be separated.
Material | Borosilicate Glass (3.3) |
---|---|
For Use With (Application) | Suitable for vacuum filtration with a maximum resulting pressure difference of 1 bar |
Impregnated with stabilized silicon makes it hydrophobic. Sartorius™ Grade 480 Silicon Impregnated Phase Separator Papers eliminates the need to use separating funnels.
Thickness (Metric) | 0.19 mm |
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Type | Qualitative Filter Paper |
Format | Disc |
Quantity | 100/Pk. |
Grade | 480 |
Material | Silicon-impregnated Paper |
For Use With (Application) | Special paper separates aqueous from organic phases |
Accessory standard adapter for microbiology manifold.