Quankun Ceramic Membrane Equipment Set - Membrane Separation Equipment Manufacturer - Compact Structure, Various Models
Product Introduction:
Nanofiltration technology is a novel separation technique that falls between ultrafiltration and reverse osmosis. Characteristics of nanofiltration membranes and their unique separation features, the preparation principles and key points of several main preparation methods for high molecular weight nanofiltration membranes, the progress of nanofiltration membrane production and research in both domestic and international markets, and the materials of several main commercialized nanofiltration membranes currently available.

Nanofiltration membranes are widely used in the removal of salts and organic matter from wastewater in various fields. These membranes have a molecular weight cut-off of 200~1,000, operate at low pressure, exhibit ionic selectivity, possess high flux, and have strong anti-fouling capabilities. This article introduces the characteristics and separation mechanism of nanofiltration membranes, and reviews the research progress in the removal of organic pollutants using nanofiltration membranes over the past few years, including the removal of organic matter from drinking water, dyeing wastewater, landfill leachate, acrylic wastewater, benzene organic compounds from wastewater, and pharmaceutical organic compounds.

Product Features:
Good chemical stability, resistant to acids, alkalis, oxidation, and organic solvents.
2. Resistant to high temperatures; capable of being sterilized and disinfected at high temperatures.
3. Easy to clean, long-lasting.
4. Narrow aperture distribution, high separation accuracy;
5. Non-leachable, suitable for process separation in food and pharmaceutical applications.
6. The complete set of equipment occupies less space, has a high level of automation, and low labor costs.
7. Low water or material intake requirements, suitable for use in some extreme environments.
8. The ceramic membrane system features a high degree of process integration and achieves full automatic control, enabling continuous feeding, continuous discharge of filtrate and filtrate sludge.
9. Compared to traditional technologies, inorganic ceramic membrane separation technology can enhance product yield and purity, shorten production cycles, boost economic benefits, and contribute to energy conservation and emission reduction.

NF Equipment Features: Tailored to meet specific customer needs, permeate from the NF membrane can be recovered, and the membrane elements can be restored to their optimal performance after cleaning, fully realizing the economic efficiency of the membrane equipment. Different membrane configurations are selected based on process technical requirements and specific user needs to ensure the retention performance of membrane elements, membrane flux, and the stability and reliability of the entire membrane system within various systems.

Quankun Ceramic Membrane System Equipment - Membrane Separation Equipment Manufacturer - Compact Structure, Various Models
The nanofiltration system operates at lower operating pressures, simultaneously achieving desalination and concentration of materials. It boasts a short production cycle, thorough desalination, high purity of the final product, and excellent quality stability. The process is conducted at ambient temperatures without phase changes, having no adverse effects on the active components of the material, making it particularly suitable for heat-sensitive substances. The product contains a high concentration of active ingredients, and can either proceed to the next stage of processing or be dried directly based on process requirements. The system runs in a fully enclosed pipeline configuration, is made of hygienic-grade stainless steel, ensuring a safe and clean working environment that meets GMP or FDA production standards. With a high degree of process integration and rational layout, the system achieves full automation control. Our engineers will provide on-site system maintenance.






























