Whatman™ Grade 934-AH Glass Microfiber Filters, Binder Free
: Cytiva
These borosilicate glass filters are specified for water pollution monitoring, cell harvesting, liquid scintillation counting and air pollution monitoring. They are often used in total suspended solids analysis.
- Smooth surface for efficient precipitate recovery
- High loading capacity
- Binder free
Total suspended solids analysis (previously called non-filterable residue) requires high loading capacity glass microfiber filters, such as grade 934-AH.
- Catalog No:
- CA10147-918
- CA28497-991
- CA28496-795
- CA28496-785
- CA28496-780
- CA14232-152
- CA28496-773
- CA28496-751
- CA28496-968
- CA28496-967
- CA28496-966
- CA28496-955
- CA28496-933
- CA28496-911
- CA28496-897
- CA28496-886
- CA97016-986
- CA28496-853
- CA28496-809
- CA28496-875
- CA11013-148
- CA11013-146
- CA28297-422
- CA28297-418
- CA28496-978
- CA28496-970
- Filtration speed:
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Fast (47 s Herzberg)
- Airflow rate:
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- 3.7 s/100 ml/in²
- Basis weight:
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- 64 g/m²
- Load capacity:
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- High loading
- Max. operating temperature:
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- 550 °C
- Particle retention in liquid:
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- 1.5 µm
- Typical thickness:
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
- 435 µm
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