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Ceramic Membrane Pilot Equipment
Plastic Ceramic Film Equipment
Multi-functional Organic Film Equipment
Plastic-Coated Ceramic Film Equipment
Nano-material Ceramic Membrane Filtration Efficiency
Organic Membrane Elements - Ultrafiltration Membranes, Nanofiltration Membranes
Organic Film Experimental Equipment
Organic Film Equipment, Nanofiltration Membrane, Ultrafiltration Membrane
Micro Membrane Separation Equipment
Deammoniation Film Equipment
Tubular Membrane
Ceramic Membrane Equipment
Ceramic Membrane Assembly
Ceramic Membrane Element


详情描述
In the intricate processes of modern industrial production, efficient and precise separation and filtration technologies are crucial. Ceramic membranes, as a new type of filter material with superior performance, are playing an irreplaceable role, bringing revolutionary changes to numerous industries. Ceramic membranes possess excellent chemical stability, maintaining stability in extreme chemical environments such as strong acids and alkalis, without being affected by chemical corrosion, thereby ensuring the efficiency of production processes and the stability of product quality. This characteristic allows them to excel in chemical and other fields. Additionally, ceramic membranes have good thermal stability, allowing them to operate normally under high temperatures, meeting the strict temperature requirements of some special processes. Their unique microstructure endows them with high-precision separation capabilities, enabling precise separation of different substances based on molecular size and shape differences, effectively retaining impurities, microorganisms, and large molecules, while allowing the target product to pass through smoothly, significantly improving production efficiency and reducing costs. The high mechanical strength of ceramic membranes ensures their durability, withstanding significant pressure without damage over long continuous operation, thereby reducing the time and economic costs associated with frequent equipment replacement. Furthermore, they are easy to clean and regenerate, reusable, further demonstrating their economic and environmental benefits. In the food and beverage industry, ceramic membranes are used for juice clarification and beer sterilization to enhance product quality; in the environmental field, they are used for wastewater treatment to achieve water resource recycling; and in the new energy industry, they assist in the purification of battery materials, driving industry development. With their superior performance, ceramic membranes provide reliable separation solutions for industrial production and serve as a powerful assistant in promoting high-quality development across various industries.In the intricate processes of modern industrial production, efficient and precise separation and filtration technologies are crucial. Ceramic membranes, as a novel filter material with excellent performance, play an indispensable role, bringing innovative changes to numerous industries. Ceramic membranes exhibit superior chemical stability, maintaining stability in extreme chemical environments such as strong acids and alkalis, and are unaffected by chemical corrosion, ensuring their separation performance. This characteristic makes them excel in chemical and other fields, guaranteeing the efficiency of production processes and the stability of product quality. Moreover, ceramic membranes have good thermal stability and can operate normally at high temperatures, meeting the strict temperature requirements of some special processes. Their unique microstructure endows them with high-precision separation capabilities. They can achieve precise separation of different substances based on differences in molecular size and shape, effectively retaining impurities, microorganisms, and macromolecules while allowing target products to pass through smoothly, greatly improving production efficiency and reducing costs. Ceramic membranes are highly mechanically strong and durable. They can withstand significant pressure over long-term continuous operation without damage, reducing the time and economic costs associated with frequent equipment replacement. Additionally, they are easy to clean and regenerate, allowing for reuse, further demonstrating their economic and environmental benefits. In the food and beverage industry, ceramic membranes are used in juice clarification, beer sterilization, and other processes to enhance product quality; in the environmental protection field, they are used in wastewater treatment to achieve water resource recycling; and in the new energy industry, they contribute to the purification of battery materials, promoting industry development. Ceramic membranes, with their outstanding performance, provide reliable separation solutions for industrial production, serving as a powerful assistant for the high-quality development of various industries.
Tailored solutions for various material systems in industries such as biochemical engineering, water treatment, chemicals, and petrochemicals.Ceramic MembraneThe micro-lamellar structure and material, adjusting α-Al2O3、ZrO2、TiO2Composite formulations with different proportions of film materialsCeramic MembraneThe flux, anti-pollution performance, and cleaning recovery properties have been optimized, thereby enabling the development of special ceramic filters.Film elementFeatures include resistance to strong acids and alkalis, solvent erosion, oxidation, high temperature, and narrow pore size distribution.
Average Membrane Pore Size:1000 nm, 800 nm,500 nm, 200 nm, 100 nm, 50 nm、40nm、30nm、20nm、10nm、5nm、2nm
Film element length:500mm,1000mm,1016mm,1040mm,1100mm,1200mm,1220mPending
Film Material: α-Al2O3, ZrO2,TiO2Composite Formula
Supporting Body Material: α-Al2O3













