Flat Sheet Membrane

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EcoLan flat membrane elements are available with a wide range of options, solid chemical stability, and non-adhesive surface characteristics. It has low filtration resistance, can achieve gravity filtration, can tolerate strong acid, strong alkali, and substantial oxidant cleaning, and has a more vital anti-pollution ability. EcoLan box-type flat sheet membrane module adopts a unique box combination with a simple structure, high filling density, large filtration area, high reliability for pressure changes, and on-site operation. It can also adjust the treatment capacity within a specific permissible range by increasing or decreasing membrane sheets and baffles. The flat sheet membrane module has open flow channels, and we can remove the membrane sheets and baffles for cleaning after clogging, so it is easy to replace and maintain the membrane.

1. Multi-layer Stacking Saves Space

EcoLan box tyle flat membrane modules are placed in multiple layers, significantly increasing the number of membrane sheets filled per unit volume and taking up less space.

2. Customization Support, Flexible Assembly

With modular assembly, free combination, unlimited installation, more flexible application, and customized production.

3. Patented Design, More Resistant to Pollution

With the open box structure at the top and bottom, the gap between the membrane sheets is more than 8mm, which makes the air and water channels smoother and can effectively avoid blockage and sludge deposition by winding hair and paper dust in the sewage. In addition, each membrane element can be disassembled and assembled independently for repeated flushing.

4. Saving Operation Costs and Reducing Power Consumption

The multi-layer stacked structure dramatically reduces the projected area of the MBR membrane system, thus significantly reducing the operating aeration and making the system less expensive. The average aeration is less than 60% of the traditional curtain-type MBR membrane, and the blower aeration accounts for more than 90% of the total energy consumption.

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