Cat #: 35-281

Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit

Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit primary image
Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit secondary image
Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit tertiary image
Ahlstrom 0540-2700 Quantitative Filter Papers - Ashless, Grade 54, 27cm, 100/Unit quaternary image
Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit primary image
Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit primary image
Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit secondary image
Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit tertiary image
Ahlstrom 0540-2700 Quantitative Filter Papers - Ashless, Grade 54, 27cm, 100/Unit quaternary image

Cat #: 35-281

Ahlstrom 0950-0900 Quantitative Filter Papers, Hardened, Ashless, Grade 95, 9cm, 100/Unit


Grade 95, 9cm

100/Unit

Brand: Ahlstrom

  • Low ash content 0.006%
  • High wet-strength
  • 1.5µm – Slow Speed
  • Case Qty: 60

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List Price: $78.05
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Grade 95, 9cm

100/Unit

Brand: Ahlstrom

  • Low ash content 0.006%
  • High wet-strength
  • 1.5µm – Slow Speed
  • Case Qty: 60

This is an extremely fine retention filter for critical gravimetric analysis and metal determination of very fine particles such as barium and lead sulfates, stannic and nickel sulfide, calcium oxalate and calcium fluoride.

These specially treated hardened ashless grades are available for critical quantitative analytical techniques requiring increased wet-strength and handling capacity. These high purity filter papers have a tough, smooth surface free of loose fibers and are ideal for collecting wet precipitates. Each grade offers a convenient combination of particle retention and flow rate and are generally used because of their high chemical resistance to strong acid and alkali.

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