




The PA/PE microporous precision filter is a device designed to separate solid particles from fluids.
It utilises sintered tubular elements as the filtration medium; after preliminary treatment, wastewater containing suspended solids passes through the medium, effectively retaining solid particles larger than 0.1 micrometres, thereby achieving the removal of suspended solids.
Under the influence of a pressure differential, the solid-liquid mixture is forced through the porous medium (filter tubes), with solid particles being retained on the surface of the medium, thereby achieving the separation of liquid from solids. The PE, PA and PAC medium microporous tubular precision filters manufactured by our company are currently among the most efficient filtration devices available in China. The processing capacity of this unit is tailored to user requirements, with filtration areas ranging from 5 to 200 square metres to meet the needs of different users.
Utilising specialised high-molecular-weight PE and PA microporous tubes, the filtration precision can reach 0.1 µm.
A simple, rapid solid-liquid separation method enables efficient and swift regeneration of clogged microporous tubes.
Resistant to various acids, alkalis and salts; withstands the majority of organic solvents at temperatures below 70°C.
Odourless, non-toxic and free from foreign matter leakage, making it suitable for applications in the pharmaceutical, food, chemical, electroplating, water treatment and oilfield water injection industries.
Microporous PE media withstands temperatures up to 80°C; microporous PA media withstands temperatures up to 100°C; microporous PAC media withstands temperatures up to 120°C.
It is widely used for solid-liquid separation and precise filtration of decolorized powdered activated carbon in industrial production and three-waste treatment of industries such as medicine, chemical, food, light industry, textile, metallurgy, electromechanical, and shipping. It is an ideal choice to replace some traditional filtering machines.