News

06

2023

-

03

Ceramic membrane can be applied in two major fields!

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As a high-tech technology in the field of nano-separation, ceramic membrane has good corrosion resistance and high temperature resistance. The working principle of the membrane element is that under the drive of pressure, the raw material liquid passes through the membrane tube, the small molecule component passes through the membrane, and the macromolecule component is retained by the membrane, so as to realize the separation, concentration and purification of nanoscale substances in the cryogenic fluid.

1. biomedical field.

Due to its unique chemical resistance and high separation accuracy, ceramic membrane is widely used in the treatment of fermentation broth such as amino acids, antibiotics and organic acids to remove mycelia, cell fibers, macromolecular proteins, yeast and bacterial wall fragments, so as to reduce processing costs and improve product recovery.

2. in the field of food and health products

The reason why ceramic membrane is used in this field is that it has the characteristics of high separation accuracy, no need to add chemical reagents, no damage to heat-sensitive substances, high temperature sterilization, and high heat sensitivity. It is suitable for the production and development of this field, and is widely used in various fields of sterilization, filtration and clarification such as various wines, juice clarification and concentration, milk sterilization filtration, tea beverage extraction, glucose filtration, etc., which promotes the rapid development of these industries.

In summary, ceramic membranes can be used in food, medicine, water treatment and industrial fields because they can intercept multivalent ions or small molecules. They have the characteristics of high temperature resistance, chemical corrosion resistance, good mechanical strength, strong antibacterial ability, high permeability, strong cleanability, narrow pore size distribution, and long service life, making them very competitive in the field of membrane methods.