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Membrane Bioreactors - SHANGHAI CM
Water Pumps

Membrane Bioreactors - SHANGHAI CM | RFQ Sourcing Details

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Product specs

CategoryWater Pumps
Unitset
Chemical WashManual + Chemical Labor intensive Chemical Immersion Automated, single operator
Comparison FactorFlat Sheet MBR Hollow Fiber MBR
Component StructureLarge Modular Requires lifting equipment Single Element Easy single-person maintenance
Flux Range10L/m²/h ~ 40L/m²/h 10L/m²/h ~ 40L/m²/h
MaterialPVDF PVDF
Operational RiskMembrane Rupture Risk "Fat belly" phenomenon Fiber Breakage Risk Minimized with TIP process
CategoryWater Pumps
AvailabilityInquiry required
Updated2026-05-26

Buyer's Digest

Use this page as a product-first sourcing checkpoint before sending an RFQ. Category: Water Pumps. Confirm application fit, capacity, materials, destination, lead time and compliance requirements before comparing suppliers.

Original product description

Industrial Grade Filtration Membrane Bioreactors (MBR) Whether you are replacing an old project or designing a new project, we can provide it for you based on our rich experience. We have professional sales staff to connect with you to solve all your problems from purchasing to using the MBR membrane.

Get a Solution Now 60+ Countries Served 1000+ Global Partners 15+ Years Experience Membrane Bioreactor (MBR) for Wastewater Treatment We can provide flat membranes, hollow fiber membranes and sewage treatment components, including sewage treatment solution design and subsequent maintenance guidance Flat Sheet MBR Flat sheet (FS) membranes have planar configuration and are predominantly rectangular.

They are designed to be immersed in the membrane tank, and scoured with air to maintain the flow of sludge through the membrane channels High Efficiency Rectangular Design Hollow Fiber MBR PVDF hollow fiber MBR is made of modified PVDF material, with high flux, good chemical resistance and pollution resistance.

The polyester interlayer support net greatly increases the mechanical strength of the membrane silk.

PVDF Material High Flux Chemical Resistant Our Comprehensive Services Solution Design Custom wastewater treatment solutions tailored to your specific needs Installation Support Professional installation and commissioning services Maintenance Guidance Ongoing maintenance support and technical guidance Key Differences Overview Hollow fiber configurations are designed for higher fluxes, operated at lower concentrations, cleaned more often and protected by stricter pre-treatment compared to flat sheet systems.

The filterability of activated sludge from municipal MBRs is superior to industrial MBRs and remains independent of membrane configuration.

Comparison Factor Flat Sheet MBR Hollow Fiber MBR Usage Rate Around 15% Around 85% Material PVDF PVDF Flux Range 10L/m²/h ~ 40L/m²/h 10L/m²/h ~ 40L/m²/h Pre-processing Requirements No Special Requirements Hair Removal Required Packing Density Toray TMR140-100s 140m² needs 2.756 m³ Dow FLEXELL 80m² needs 0.7056 m³ 2x Higher Density Pollution Recovery Method Air Scrubbing Chemical Cleaning Backwash Air Scrub Enhanced Backwash Chemical Cleaning Operational Risk Membrane Rupture Risk "Fat belly" phenomenon Fiber Breakage Risk Minimized with TIP process Self-healing No Self-healing Self-healing Function Component Structure Large Modular Requires lifting equipment Single Element Easy single-person maintenance Energy Consumption Air-water ratio 30:1 High gas consumption Gas-water ratio 3:1~5:1 Low energy consumption Chemical Wash Manual + Chemical Labor intensive Chemical Immersion Automated, single operator Material Advantage PVDF's superior oxidation resistance compared to other materials (such as PE) makes it the mainstream material for MBR membranes in sewage treatment and reuse applications.

Backwash Advantage Backwashing is the most ideal pollution recovery method for the membrane industry. The inability to backwash is the biggest defect of flat membranes, leading to shortened chemical cleaning cycles.

Membrane Bioreactors (MBRs) Advantages And Applications Membrane Bioreactors (MBRs) can be broadly defined as a system that combines wastewater biodegradation with membrane filtration. They have proven to be very effective in removing organic and inorganic pollutants as well as biological entities from wastewater.

Technology Overview There are many types of MBR such as tubular, plate and hollow fiber. Among them, hollow fiber PVDF material has been proven to be the most reasonable in price and good in performance. The membranes used had pore sizes ranging from 0.01 to 0.4 µm.

Tubular Plate Hollow Fiber Advantages of MBR Technology Automated Control Good control of biological activity with automatic STP system operation and reduced labor costs High Quality Effluent Produces effluent free of bacteria and pathogens with superior water quality Compact Design Smaller plant size with lower space requirements due to higher MLSS and short HRT Higher Loading Rates Capable of handling higher organic loading rates efficiently Applications of MBR Technology Currently, MBR is widely applied to all types of wastewater, including water recycling in buildings, wastewater treatment for small communities, industrial wastewater treatment, landfill leachate treatment, and agricultural wastewater processing.

Municipal Wastewater Treatment MBR systems were initially used for municipal wastewater treatment, primarily in the area of water reuse and recycling.

Compactness, production of reusable water, and trouble-free operation made the MBR an ideal process for recycling municipal wastewater in water and space limited environments.

Water Recycling Space Efficient Industrial Wastewater Treatment High organic loadings and very specific and difficult to treat compounds are two major characteristics of industrial waste streams that render alternative treatment techniques such as the MBR desirable.

Since traditionally wastewater with high COD content was treated under anaerobic conditions, initial attempts of MBR applications for industrial wastewater were in the field of anaerobic treatment. Also effective removal of nitrates, herbicides, pesticides, and endocrine disrupting compounds may be achieved by MBRs.

High COD Treatment Pesticide Removal Specialized Applications In addition to municipal and industrial wastewater treatment, MBRs have been utilized in a number of other areas. One such area is the treatment of landfill leachates. Landfill leachates usually contain high concentrations of organic and inorganic compounds.

MBR systems have been successfully utilized with an additional treatment step for inorganics and heavy metal removal, such as Ultra Filtration and reverse osmosis (RO). Several industrial scale plants, combining a MBR, Ultra filtration and a reverse osmosis system, are presently operated.

MBR Membrane Ultra Filtration Reverse Osmosis MBR Sewage Treatment Integrated Equipment Advanced membrane bioreactor technology for efficient wastewater treatment with compact design and superior performance Featured Project 100T per day MBR Sewage Treatment Integrated Equipment Our state-of-the-art MBR integrated equipment combines biological treatment with membrane filtration technology, delivering exceptional water quality while maintaining compact footprint and energy efficiency.

Daily Capacity 100T Per Day Efficiency 99% Removal Rate Compact Design Energy Efficient Low Maintenance High Quality Output Key Features & Specifications Advanced MBR Technology Combines biological treatment with membrane filtration for superior effluent quality Automated Control In ntal impact Request Quote .

Please fill out the form or . Kaimi He +86 Building 9, No. 1188 Jiangyue Road, Minhang District, Shanghai

Membrane | Applications and Buyer Notes

Membrane is organized as a sourcing-ready Water Pumps reference. The page combines visible product or company data with structured procurement cues so buyers can compare application fit, specifications, quantity, quality requirements and lead-time questions be

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Key specifications

Category
Water PumpsBased on visible page data; confirm exact value in the RFQ.
Unit
setBased on visible page data; confirm exact value in the RFQ.
Chemical Wash
Manual + Chemical Labor intensive Chemical Immersion Automated, single operatorBased on visible page data; confirm exact value in the RFQ.
Comparison Factor
Flat Sheet MBR Hollow Fiber MBRBased on visible page data; confirm exact value in the RFQ.
Component Structure
Large Modular Requires lifting equipment Single Element Easy single-person maintBased on visible page data; confirm exact value in the RFQ.
Flux Range
10L/m²/h ~ 40L/m²/h 10L/m²/h ~ 40L/m²/hBased on visible page data; confirm exact value in the RFQ.
Material
PVDF PVDFBased on visible page data; confirm exact value in the RFQ.
Operational Risk
Membrane Rupture Risk "Fat belly" phenomenon Fiber Breakage Risk Minimized withBased on visible page data; confirm exact value in the RFQ.

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Source mix: ugc

Key specifications

CategoryWater Pumps
Unitset
Chemical WashManual + Chemical Labor intensive Chemical Immersion Automated, single operator
Comparison FactorFlat Sheet MBR Hollow Fiber MBR
Component StructureLarge Modular Requires lifting equipment Single Element Easy single-person maintenance
Flux Range10L/m²/h ~ 40L/m²/h 10L/m²/h ~ 40L/m²/h
MaterialPVDF PVDF
Operational RiskMembrane Rupture Risk "Fat belly" phenomenon Fiber Breakage Risk Minimized with TIP process
Packing DensityToray TMR140-100s 140m² needs 2.756 m³ Dow FLEXELL 80m² needs 0.7056 m³ 2x Higher Density
Pollution Recovery MethodAir Scrubbing Chemical Cleaning Backwash Air Scrub Enhanced Backwash Chemical Cleaning
Pre-processing RequirementsNo Special Requirements Hair Removal Required
Self-healingNo Self-healing Self-healing Function
Usage RateAround 15% Around 85%

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