The flat Ceramic membrane is a precision filter material made of alumina, zirconia, titanium oxide and other inorganic materials through high-temperature sintering. The support layer, transition layer, and separation layer are all porous structures with gradient asymmetric distribution. The plate surface of the flat Ceramic membrane is densely covered with micropores. According to the range of membrane pore size, the permeability varies with the molecular diameter of the permeated substances. The pressure difference on both sides of the membrane is the driving force, and the membrane is the filter medium. Under a certain pressure, when the feed liquid flows through the membrane surface, only water, inorganic salts, small molecular substances are allowed to pass through the membrane, while the suspended solids, glue, microorganisms and other large molecular substances in the water are prevented from passing through. The flat Ceramic membrane can be used for separation, clarification, purification, concentration, sterilization, desalination, etc. in the process, and has been successfully used in many fields such as food, beverage, plant (drug) deep processing, biomedicine, fermentation, fine chemical industry, etc.
※ Long service life without deterioration;
※ Acid, alkali, and organic solvent resistant, suitable for various wastewater containing solvents and chemicals;
※ Good hydrophilicity and better anti pollution performance;
※ Good mechanical performance, no broken hollow fiber membrane;
※ More convenient cleaning, longer cleaning cycle, suitable for various cleaning methods;
Low operating costs and energy conservation;
Membrane bioreactor (MBR)
● Industrial wastewater treatment
● Seawater desalination pre-treatment
● Municipal sewage treatment
● Domestic sewage treatment
● Hospital sewage treatment
● Treatment of landfill leachate
● Pre processing of reverse osmosis (RO) systems
Note:
In the practical application of Ceramic membrane, different feed liquid systems have different ideal membrane pore sizes and ideal membrane materials. Under the condition of ensuring a reasonable interception rate, the higher the flux of the selected membrane, the higher the operating efficiency of the membrane system.
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