Greentech International (Zhangqiu) Co., Ltd.
Greentech Industry (Jinan) Co., Ltd.
High-Precision Filtration and Efficient Interception
MF filters stably intercept particulates ranging from 0.1 to 10 μm through a pore size screening mechanism, achieving a bacterial and yeast interception rate of over 99.99%, far exceeding traditional sand filtration and bag filtration processes.
For example, in beer production, the bacterial interception efficiency of MF filters is 50 times that of diatomaceous earth filtration, without the need for filter aids to avoid secondary pollution.
Low Transmembrane Pressure Differential: MF membranes have larger pore sizes, resulting in low filtration resistance and operating pressures typically ranging from 0.1 to 0.3 MPa, which is only one-third of ultrafiltration (UF) and one-tenth of reverse osmosis (RO), significantly reducing energy consumption.
Strong Chemical Stability: MF membranes made of corrosion-resistant materials such as polytetrafluoroethylene (PTFE) and polysulfone (PS) can withstand acids, alkalis, organic solvents, and high temperatures (above 120°C), making them suitable for various harsh operating conditions. They can also be regenerated through backwashing and chemical cleaning, with a lifespan of 3-5 years.
Modular Design: MF filters are available in various structures such as hollow fiber, spiral wound, and plate-and-frame, supporting parallel or series installation and flexible capacity expansion based on treatment volume, reducing footprint.
Intelligent Control: Combined with pressure sensors, flow meters, and other instruments, parameters such as filtration pressure, transmembrane pressure differential, and backwashing cycle can be automatically monitored and adjusted, reducing manual intervention and enhancing operational stability.
No Secondary Pollution: MF filtration is a physical separation process that does not require the addition of chemical agents. The concentrated filtrate can be disposed of through incineration or biodegradation, complying with green manufacturing requirements.
Significant Cost Advantages: Taking an electronics factory's ultrapure water project as an example, adopting MF filters instead of traditional multi-media filters + activated carbon filters reduced equipment investment by 40% and operating costs by 25%, while providing more stable effluent quality.
MF filters have become key equipment in the food and beverage, pharmaceutical, electronics, environmental protection, and other industries due to their high precision, low energy consumption, and long lifespan. With continuous advancements in membrane material technology (such as the application of nanofiber membranes and graphene membranes), the flux and anti-fouling performance of MF filters will further improve, broadening their application prospects in industrial purification. Enterprises should select appropriate membrane materials and structures based on actual operating conditions and establish regular maintenance protocols to fully leverage the performance potential of MF filters.
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