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Whatman™ Grade 4 Qualitative Filter Papers, Whatman products (Cytiva)

Grade 4 qualitative filter paper standard grade, circle, 150 mm
Catalog # 470019-894
Whatman™ Grade 4 Qualitative Filter Papers, Whatman products (Cytiva)
Catalog # 470019-894
Supplier:  Cytiva
Whatman™ Grade 4 Qualitative Filter Papers, Whatman products (Cytiva)
Whatman™ Grade 4 Qualitative Filter Papers, Whatman products (Cytiva)

Grade 4 qualitative filter paper standard grade, circle, 150 mm

Price
$53.90
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Box of 100
Product Details & Documents

Whatman Grade 4 Qualitative Filter Papers are a standard grade, high flow rate filter paper. They are useful in qualitative analytical separations when fast flow is required and the collection of fine particles is not critical.

  • Excellent retention: Captures coarse particles and gelatinous precipitates such as ferric hydroxide and aluminum hydroxide
  • Fast filtration: Useful for routine clean-up of biological fluids or organic extracts during analysis

These cellulose filters are used in qualitative analytical techniques to determine and identify materials (e.g., in air pollution monitoring).

Grade 4 Qualitative Filter Papers (20 - 25 µm particle retention) are available in a variety of sizes and formats including circles, sheets, and rolls. They are also available as prepleated filters, which give improved flow rate and increased loading capacity compared to equivalent flat filters.

Specifications
  • Description:
    Grade 4 qualitative filter paper standard grade, circle, 150 mm
  • Tensile Strength:
    28.4 N/15 mm, Tensile M/D Dry
  • Thickness:
    205 µm (typical)
  • Cat. No.:
    470019-894
  • Particle Retention:
    25 µm (Particle retention rating at 98% efficiency), in liquid max.
  • Flow Rate:
    Very fast
  • Basis Weight:
    96 g/m²
  • Airflow Rate:
    3.7 s/100 ml/in²
  • Filtration Speed:
    Approx. 37 s (Herzberg)
  • Burst Strength:
    0.048 bar, wet burst; 0.689 bar, dry burst
  • Ash Content:
    0.06% (Ash is determined by ignition of the cellulose filter at 900 °C in air)