Expired Nitrocellulose Mixed Ester (MCE) Membrane Filters, Sterile Individual Pack (with pad), gridded, 0.8 Micron, 47mm, 100/Pk

Our sterile, white, gridded, padded Mixed Cellulose Esters (MCE) membranes--a versatile mixture of cellulose nitrate and cellulose acetate fibers--are general purpose filters with high recovery rates, high porosity, and superior flow rates. These pre-sterilized filters are suited for single use in many microbiological applications, including the examination of water, wastewater, pharmaceuticals, food, and beverages. The grid-lines on the membrane's surface eliminate eye-fatigue during colony-counting and the white surface allows color reactions to be easily observed. 
  • SKU
    MCE0847100SGP-D
  • Pore Size (µm)
    0.8µm
  • Diameter
    47
  • Pack Size
    100
Special Price$37.37was$67.95
+ -
only 1 left in stock

Our sterile, white, gridded, padded Mixed Cellulose Esters (MCE) membranes--a versatile mixture of cellulose nitrate and cellulose acetate fibers--are general purpose filters with high recovery rates, high porosity, and superior flow rates. These pre-sterilized filters are suited for single use in many microbiological applications, including the examination of water, wastewater, pharmaceuticals, food, and beverages. The grid-lines on the membrane's surface eliminate eye-fatigue during colony-counting and the white surface allows color reactions to be easily observed. 

The filter of choice for water, wastewater, pharmaceutical, liquid food, and beverage single-use-applications.


  • Pre-Sterilized: For single-use applications
  • Hydrophilic water compatibility: For aqueous clarification and particulate capture
  • Consistent, high flow rates: Reduces process times with faster, more efficient filtration
  • Uniform pore structure and controlled thickness: Provides selectivity and consistency
  • Mixed, inert cellulose nitrate: For wide biological and chemical compatibility
  • Mixed cellulose acetate: Provides a smoother, more optically compatible surface than pure nitrocellulose
  • High protein binding capacity: Excellent retention of proteinaceous samples
  • High degree of internal surface area: Optimizes product adsorption

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