The Hahnemühle Glass Microfibre Filter GF6 is designed for high-performance filtration in laboratory and analytical applications. With a diameter of 55 mm and an inorganic binder of 80 g/sqm, this filter ensures efficient particle retention and high dirt-holding capacity. It is ideal for use in environmental monitoring, air and water testing, and other applications requiring precise and reliable filtration.
The Hahnemühle Glass Microfibre Filter GF6 provides superior filtration performance and is perfect for laboratory environments that require precision and reliability.
It is designed for high-performance filtration in laboratory and analytical applications. With a diameter of 55 mm and an inorganic binder of 80 g/sqm, this filter ensures efficient particle retention and high dirt-holding capacity. It is ideal for use in environmental monitoring, air and water testing, and other applications requiring precise and reliable filtration.
Yes. It is designed for high-efficiency filtration in laboratory testing and analysis, and offers a diameter of 55 mm and a weight of 80 g/sqm for high dirt-holding capacity to support this kind of work.
It has a diameter of 55 mm and a weight of 80 g/sqm for high dirt-holding capacity, and is supplied under manufacturer part number GF6055.
It is made from glass microfibre with inorganic binder for superior filtration. It also offers made of 100 % borosilicate glass fibres with binders, glass fibre filters capture fine particles down to 1 µm from liquids, in air, gases and aerosols with even 0.3 to 0.5 µm being absorbed and extremely low content in alkali-earth metals.
For high-efficiency filtration in laboratory testing and analysis, the Hahnemühle model is the better choice, offering a diameter of 55 mm and a weight of 80 g/sqm for high dirt-holding capacity. The LLG model offers a diameter of 47 mm and a pore size of 1.6 µm as an alternative, while the Hahnemühle model's made of 100 % borosilicate glass fibres with binders and glass fibre filters capture fine particles down to 1 µm from liquids, in air, gases and aerosols with even 0.3 to 0.5 µm being absorbed help make it a strong fit for high-efficiency filtration in laboratory testing and analysis.
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