Cytiva's Whatman Grade 542 filters are acid hardened to allow high retention of fine precipitates in applications such as metal determinations and hydroxide collection.
- High wet-strength
- Acid-hardened for resistance to strong acid and alkali solutions
- Nominal particle retention rating of 2.7 µm
- Herzberg filtration speed of 2510 s
- Extremely low ash content (0.006% ash maximum)
Along with Grade 542 cellulose filter paper, the Whatman range of hardened quantitative papers from Cytiva's business includes fast Grade 541 and general-purpose Grade 540 filters. All three grades are designed for use in quantitative analysis with strong acid/alkali solutions.
Hardened Grade 542 quantitative papers enable high retention of fine particles in chemically harsh conditions. When acting as a gravimetric filter, this cellulose filter paper is therefore well suited for use in capturing fine precipitates in applications such as metal determinations and hydroxide collection.
Quantitative filter papers featuring high wet strength and chemical resistance. These papers are acid hardened, which reduces ash to an extremely low level. Their tough surfaces make them suitable for a wide range of critical analytical filtration operations. Each grade offers a convenient combination of filtration speed and particle retention.
- Catalog No:
- 1542150.
- 1542125.
- 1542240.
- 1542185.
- 1542070.
- 1542055.
- 1542110.
- 1542090.
- Grade:
- 542
- 542
- 542
- 542
- 542
- 542
- 542
- 542
- Weight:
- 93 g/m²
- 93 g/m²
- 93 g/m²
- 93 g/m²
- 93 g/m²
- 96 g/m²
- 93 g/m²
- 93 g/m²
- Thickness:
- 150 µm
- 150 µm
- 150 µm
- 150 µm
- 150 µm
- 150 µm
- 150 µm
- 150 µm
- Particle retention:
- 2,7 µm
- 2,7 µm
- 2,7 µm
- 2,7 µm
- 2,7 µm
- 2,7 µm
- 2,7 µm
- 2,7 µm
- Filtration speed:
- 2510 s (Herzberg)
- 2510 s (Herzberg)
- 2510 s (Herzberg)
- 2510 s (Herzberg)
- 2510 s (Herzberg)
- 2510 s (Herzberg)
- 2510 s (Herzberg)
- 2510 s (Herzberg)
- Ash content:
- 0,005%
- 0,005%
- 0,005%
- 0,005%
- 0,005%
- 0,005%
- 0,005%
- 0,005%
- Airflow rate:
- 64 s/100 ml/6,5 cm²
- 64 s/100 ml/6,5 cm²
- 64 s/100 ml/6,5 cm²
- 64 s/100 ml/6,5 cm²
- 64 s/100 ml/6,5 cm²
- 64 s/100 ml/6,5 cm²
- 64 s/100 ml/6,5 cm²
- 64 s/100 ml/6,5 cm²