The Hahnemühle Glass Microfibre Filter GF6 is ideal for applications requiring efficient particle retention and filtration. With an inorganic binder and an 80 g/sqm weight, these filters provide superior performance and durability. Each filter measures 25 mm in diameter and is sold in a convenient pack of 100, making them perfect for high-throughput laboratory environments.
These high-performance filters are perfect for laboratories that require precise and reliable filtration in a variety of scientific and industrial applications.
It is ideal for applications requiring efficient particle retention and filtration. With an inorganic binder and an 80 g/sqm weight, these filters provide superior performance and durability. Each filter measures 25 mm in diameter and is sold in a convenient pack of 100, making them perfect for high-throughput laboratory environments.
Yes. It is designed for filtration of fine particulates and analytical applications, and offers a weight of 80 g/sqm for optimal retention and a diameter of 25 mm to support this kind of work.
It has a weight of 80 g/sqm for optimal retention and a diameter of 25 mm, and is supplied under manufacturer part number GF6025.
It is made from glass microfibre with inorganic binder for enhanced filtration performance. 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 filtration of fine particulates and analytical applications, the Hahnemühle model is the better choice, offering a weight of 80 g/sqm for optimal retention and a diameter of 25 mm. The LLG model offers a pore size of 0.7 µm for effective fine particle collection and a diameter of 55 mm 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 filtration of fine particulates and analytical applications.
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