Remove fine particles! Zeta potential adsorption filtration fiber 'Zeta Max'
The force of the zeta potential efficiently removes difficult-to-remove ultrafine particles ranging from a few nanometers to several hundred nanometers!
The charge-adsorbing filtration fiber "ZetaMax" has a positive surface potential in the liquid. Particles dispersed in the liquid, such as "pigments," "oil particles," "bacteria," "viruses," "glass," "colloidal silica," "colloidal particles," and "color components," have a negative surface potential in the liquid (which varies with pH). When the above-mentioned microparticles approach the charge-adsorbing fiber "ZetaMax," they are adsorbed to ZetaMax due to the potential difference between positive and negative charges. The charge-adsorbing filtration fiber "ZetaMax" removes microparticles from the liquid not through physical filtration like UF membranes or MF membranes, but through adsorption similar to activated carbon or zeolite. This adsorption utilizing charge efficiently removes viscous substances that are difficult to eliminate using conventional membrane filtration methods, as well as substances ranging from a few nanometers to several hundred nanometers that are hard to adsorb with activated carbon or zeolite. *For more details, please download the PDF or feel free to contact us.*
basic information
○Features○ 1. Utilizes an adsorption mechanism based on electric charge to adsorb and remove substances such as "pigments," "oil particles," "bacteria," "viruses," "glass," "colloidal silica," "colloidal particles," and "color components." 2. Capable of removing viscous substances that are difficult to eliminate with UF membranes or MF membranes. 3. Can remove substances ranging from a few nanometers to several hundred nanometers that are difficult to adsorb with activated carbon or zeolite.
Price information
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Delivery Time
Model number/Brand name
Zeta Max
Applications/Examples of results
- Removal of oil components - Removal of water-soluble cutting oil - Removal of fine particles ranging from several nm to several hundred nm