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Whatman<sup>®</sup> Cellulose Acetate Membranes, ST68/69

Whatman® Cellulose Acetate Membranes, ST68/69

Whatman cellulose acetate membranes are made from pure cellulose acetate making them suitable for biological and clinical analysis, sterility tests, and scintillation measurements.

Cellulose acetate membrane filters exhibit very low protein binding capacity. They are hydrophilic making them suitable for aqueous and alcoholic media. The cellulose acetate membranes have improved solvent resistance, particularly to low molecular weight alcohols, and increased heat resistance. With high physical strength, the membrane filters can be used up to 180°C, are suitable for hot gases, and can be sterilized by all methods without sacrificing the integrity of the membrane.

Image(s) are representative of the product group and not necessarily the individual product.
IMPORTANT UPDATE - All sales after March 2, 2020 are final and non-returnable for COVID-19 related items. Prices and delivery dates may fluctuate. Refer to T&Cs for more information.
Catalog Item Availability Mfr. Part # List Price Unit
889-77556 CA Membrane Circle ST68, 0.8 um, 47 mm

10403112 $179.90 PK
889-77280 CA Membrane Circle ST69, 0.2 um, 47 mm, 100/pk.

7001-0004 $186.75 PK
889-77274 CA Membrane Circle ST69, 0.45 um, 25 mm, 100/pk.

7000-0002 $175.75 PK
889-77277 CA Membrane Circle ST69, 0.45 um, 47 mm, 100/pk.

7000-0004 $186.75 PK
889-77553 CA Membrane Circle ST69, 1.2 um, 47 mm

10403012 $179.90 PK

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Whatman cellulose acetate membranes are made from pure cellulose acetate making them suitable for biological and clinical analysis, sterility tests, and scintillation measurements.

Cellulose acetate membrane filters exhibit very low protein binding capacity. They are hydrophilic making them suitable for aqueous and alcoholic media. The cellulose acetate membranes have improved solvent resistance, particularly to low molecular weight alcohols, and increased heat resistance. With high physical strength, the membrane filters can be used up to 180°C, are suitable for hot gases, and can be sterilized by all methods without sacrificing the integrity of the membrane.

Image(s) are representative of the product group and not necessarily the individual product.

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