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{"title":"Industrial Wastewater Treatment with High Flux PVDF Material MBR Ultra","imgUrl":"https:\/\/img.chinax.com\/nimg\/84\/c7\/0aaf950c64728cc9930fcd2b2c69-200x200-1\/industrial_wastewater_treatment_with_high_flux_pvdf_material_mbr_ultra_filtration_membrane_and_2000_2a535_2a46_size.jpg","attrs":{"video outgoing-inspection":"Provided","machinery test report":"Provided","core components":"PVDF hollow fiber","place of origin":"Beijing, China"}}
{"title":"MBR Water Filter Component ABS Plate with Reinforced RPVDF Membrane and High","imgUrl":"https:\/\/img.chinax.com\/nimg\/86\/2e\/d4379b892187073616e12094dc08-200x200-1\/mbr_water_filter_component_abs_plate_with_reinforced_rpvdf_membrane_and_high_filtration_efficiency.jpg","attrs":{"video outgoing-inspection":"Provided","machinery test report":"Provided","core components":"PVDF hollow fiber","place of origin":"Beijing, China"}}
{"title":"Customizable Water Purification NIPS\/TIPS PVDF Hollow Fiber Membrane for Waste","imgUrl":"https:\/\/img.chinax.com\/nimg\/b1\/0f\/d3701d3db01ea220a417e7017d5e-200x200-1\/customizable_water_purification_nips_2ftips_pvdf_hollow_fiber_membrane_for_waste_water_treatment.jpg","attrs":{"video outgoing-inspection":"Provided","machinery test report":"Provided","core components":"PVDF hollow fiber","place of origin":"Beijing, China"}}
{"title":"500L\/Hour Filtering Type Flat Sheet Membrane Pvdf Mbr Hollow Fiber Membrane for","imgUrl":"https:\/\/img.chinax.com\/nimg\/86\/2e\/d4379b892187073616e12094dc08-200x200-1\/500l_2fhour_filtering_type_flat_sheet_membrane_pvdf_mbr_hollow_fiber_membrane_for_wastewater_treatment_solution.jpg","attrs":{"video outgoing-inspection":"Provided","machinery test report":"Provided","core components":"PVDF hollow fiber","place of origin":"Beijing, China"}}
{"title":"PVDF Reinforced Hollow Fiber Ultrafiltration Membrane The Perfect Solution for","imgUrl":"https:\/\/img.chinax.com\/nimg\/86\/2e\/d4379b892187073616e12094dc08-200x200-1\/pvdf_reinforced_hollow_fiber_ultrafiltration_membrane_the_perfect_solution_for_different_domestic_sewage_treatment_needs.jpg","attrs":{"video outgoing-inspection":"Provided","machinery test report":"Provided","core components":"PVDF hollow fiber","place of origin":"Beijing, China"}}
Sewage Treatment Plant with UF Mbr System for Water Purification /adjustment tank/MBR tank/Treated water tank/Membrane Bioreactor
Membrane bioreactor (MBR) is an advanced and innovative wastewater treatment technology that integrates membrane separation processes with biological treatment systems. It has become increasingly popular in recent years due to its numerous advantages and wide range of applications. Working Principle In an MBR system, the biological treatment process is carried out in a reactor where microorganisms break down organic matter, nitrogen, and other pollutants in the wastewater. The membrane separation unit, which consists of microfiltration (MF) or ultrafiltration (UF) membranes, is then used to separate the treated water from the biomass and other suspended solids. The membranes have very small pores that allow water and small - sized solutes to pass through while retaining the microorganisms, activated sludge, and large - molecular - weight substances. This results in a high - quality effluent with low turbidity and low levels of suspended solids.
Specification
Model
Size L*W(mm)
Membranearea(㎡)
Wateramount(㎡)
(NTU)waterturbidity
(mg/l)ss
FPA1
810*525
8
1.0~1.2
<1
<10
FPA2
1050*525
10
12~1 5
<1
<10
FPA3
1050*535
16
2.0~2.5
<1
<10
item
value
Condition
New
Applicable Industries
Hotels, Garment Shops, Building Material Shops, Manufacturing Plant, Machinery Repair Shops, Food & Beverage Factory, Farms,
Restaurant, Home Use, Retail, Food Shop, Printing Shops, Construction works , Energy & Mining, Food & Beverage Shops, Other,
Advertising Company
Showroom Location
South Korea, Chile, UAE, Colombia, Algeria, Sri Lanka
Video outgoing-inspection
Provided
Machinery Test Report
Provided
Marketing Type
New Product 2020
Core Components
Engine, Motor, PLC
Place of Origin
Shandong,China
Brand Name
Spark
Material
Wooden case
Weight
According to your order
Size
According to your order
Power
0.5
Warranty
1 Year
Productivity
1000L/Hour
Weight (KG)
800kg
Product name
UF Membrane
Material
SS316L
Application
Water Purification
Type
Pure Water Treatment System
Certification
CE Certificate
Keywords
Waste Water Treatmnet
Equipment Working Process
1. Pretreatment Stage
Bar Screen/Filter: Removes large debris from wastewater to prevent clogging of downstream equipment.
Equalization Tank: Balances the flow rate and homogenizes the wastewater's composition to ensure stable conditions for subsequent treatment.
Primarym Sedimentation Tank: Utilizes gravity to settle sand and large suspended solids, reducing the load on the biological treatment unit.
2. Biological Treatment Stage
Activated sludge or biofilm degrade organic pollutants (COD, BOD), nitrogen, and phosphorus. This process includes:
Anoxic Tank: Under anaerobic conditions, denitrifying bacteria convert nitrates into nitrogen gas and decompose some organic matter.
Aerobic Tank: Aeration promotes the growth of aerobic microorganisms, which efficiently decompose organic pollutants and convert ammonia to nitrates.
Anaerobic Tank: Anaerobic bacteria break down complex organics and facilitate biological phosphorus removal.
3. Advanced Treatment Stage
The wastewater after biological treatment still contains trace amounts of suspended solids, colloids, or microorganisms. The MBR process replaces the conventional secondary clarifier, achieving more efficient solid-liquid separation through membrane interception.
4. Disinfection and Effluent
The treated water is disinfected (e.g., UV irradiation or sodium hypochlorite) to meet discharge standards or reuse requirements (e.g., irrigation, toilet flushing).
Note: The MBR process integrates membrane filtration with biological treatment, achieving higher effluent quality and compact system design compared to conventional methods.
Our Advantages
High - Quality Effluent
The membrane filtration process effectively removes suspended solids, bacteria, and viruses, producing an effluent that can meet very strict discharge standards or even be reused for various non - potable purposes such as irrigation, industrial cooling, and toilet flushing. Compact Design: Compared to traditional wastewater treatment systems, MBRs have a smaller footprint because the need for large settling tanks and other secondary treatment units is eliminated. This makes them suitable for installation in areas with limited space.
Low Sludge Production
The long solids retention time (SRT) in the MBR system allows for the complete digestion of organic matter, resulting in significantly less sludge production than conventional treatment methods. This reduces the cost and environmental impact of sludge disposal.
Good Resistance to Shock Loads
MBR systems can better withstand changes in the quality and quantity of the influent wastewater due to the high concentration of microorganisms and the efficient separation of solids. They can quickly recover from fluctuations in pollutant levels and maintain stable treatment performance.
Applications
Municipal Wastewater Treatment: MBRs are widely used in municipal wastewater treatment plants to upgrade the treatment process and improve the quality of the effluent discharged into rivers, lakes, or the sea. They can also be used for small - scaledecentralized wastewater treatment in rural areas or individual buildings.Industrial Wastewater Treatment: Many industries, such as food and beverage, textile, pharmaceutical, and electronics, generate wastewater with high concentrations of organic pollutants, heavy metals, or other contaminants. MBRs can be customized to treat these specific types of industrial wastewater, removing pollutants and enabling the reuse of the treated water within the industrial process, thereby reducing water consumption and environmental impact. Reclaimed Water Production: With the increasing demand for water resources, MBRs play a crucial role in the production of reclaimed water. The high - quality effluent from MBRs can be further treated and disinfected to meet the standards for non - potable water reuse, helping to alleviate water shortages in many regions. In summary, membrane bioreactors offer a reliable, efficient, and environmentally friendly solution for wastewater treatment and water reuse, contributing to the sustainable management of water
Company Profile
01:48
03:00
We are a high-tech enterprise specializing in reverse osmosis membrane, ultrafiltration membrane, nanofiltration and MBR membrane assembly, membrane production and sales service, and also a system design and proprietary service provider. The company has the core technology of preparing reverse osmosis membrane components, and has high production capacity, aiming to build a high-quality brand of film production and sales in China. Main products include reverse osmosis membrane components,nanofiltration membrane components, ultrafiltration membrane components, MBR membrane and other high- performance membrane components, which have been widely used in water purification, medical pharmaceuticals, municipal water supply, boiler replenishment, electronic ultra- pure water, material concentration and separation industries. With outstanding quality and excellent service, our products export to all over the world!
Q1: What does MBR stand for? A: MBR = Membrane Bio-Reactor. It combines biological wastewater treatment with ultrafiltration membranes for superior effluent quality.
Q2: How does MBR differ from conventional activated sludge? A: Our MBR replaces secondary clarifiers with 0.1μm membranes, achieving 10x higher MLSS concentrations and producing reusable water (≤5 NTU turbidity).
Q3: What contaminants can MBR remove? A: Removes 99.9% bacteria, 95%+ viruses, 100% suspended solids, and reduces COD/BOD by 90-98%. Ideal for nutrient (N/P) removal when paired with anaerobic zones.
Q4: How often do membranes need replacement? A: Typical service life = 5-8 years with proper maintenance. Our PVDF membranes feature reinforced fibers resisting abrasion and chemical degradation.
Q5: Is chemical cleaning required? A: Automated CIP (Clean-in-Place) every 3-6 months using <0.5% NaOCl/CA solution. Daily backwashing maintains permeability.
Q6: Can MBR handle industrial wastewater? A: Yes. Our membranes tolerate pH 2-12, temperatures up to 40°C, and 5000ppm TDS. Special coatings available for oil/grease resistance.
Q7: What’s the energy consumption? A: 0.4-0.7 kWh/m³ with our optimized aeration system – 30% more efficient than standard coarse bubble systems.
Q8: How much space does an MBR system require? A: 50% smaller footprint vs traditional plants. Modular designs allow vertical stacking for space-constrained sites.
Q9: Is the effluent suitable for reuse? A: Yes. Meets ISO 30500 reuse standards for irrigation, cooling towers, and toilet flushing. Optional UV/ozone for potable-grade water.
Q10: What technical support do you provide? A: 24/7 remote monitoring + on-site commissioning. All systems include 2-year performance warranty and membrane integrity guarantees.
UF specifications and models
Membrane material
Operation mode
Membrane element size (mm)
Effective membrane area (㎡)
Nominal filter pore size (μm)
SN U-HO-2-Z250
PVDF
outside-in
Φ250×1715
75
0.03
SNU-HO-2-Z225L
PVDF
outside-in
Φ225×1760
60
0.03
SNU-HO-2-Z160L
PVDF
outside-in
Φ160×1810
40
0.03
SNU-HO-2-Z160S
PVDF
outside-in
Φ160×1330
30
0.03
SNU-HO-2-KMP
PVDF
outside-in
Φ220×2060
51
0.03
SNU-HO-2-D2020AN
PVDF
outside-in
Φ216×2160
72
0.01
SNU-HO-2-D1020AN
PVDF
outside-in
Φ216×1120
29
0.01
SNU-HO-2-SP40
PVDF
outside-in
Φ160×1804
40
0.03
SNU-HO-2-SP50
PVDF
outside-in
Φ160×2330
50
0.03
SNU-HO-2-SP80
PVDF
outside-in
Φ225×2360
80
0.03
SNU-HO-2-HMAX40
PVDF
outside-in
Φ250×1365
52
0.03
SNU-HO-2-HMAX80
PVDF
outside-in
Φ250×2340
105
0.03
SNU-HO-2-TF4
PVDF
outside-in
Φ160×1810
40
0.03
SNU-HO-2-C1080
PVDF
outside-in
Φ250×2215
105
0.03
SNU-HO-2-C1060
PVDF
outside-in
Φ250×1715
75
0.03
SNU-HO-2-C1030
PVDF
outside-in
Φ250×965
35
0.03
SNU-HO-2-G1500
PVDF
outside-in
Φ180×1920
55.7
0.03
SNU-HI-1-K600ER
PES
inside-out
Φ216×2130
60
0.02
SNU-HI-1-NXIGA
PES
inside-out
Φ200×1528
40
0.01
SNU-HI-1-H40
PES
inside-out
Φ225×1200
30
0.01
SNU-HI-1-H60
PES
inside-out
Φ225×1708
46
0.01
SNU- HI-1 -C1080
PES
inside-out
Φ250×2215
68
0.01
SNU- HI-1 -C1060
PES
inside-out
Φ250×1715
50
0.01
SNU- HI-1 -C1030
PES
inside-out
Φ250×965
twenty three
0.01
SNU- HI-1 -C0650A
PES
inside-out
Φ187×1399
16
0.01
SNU-HI-1-NX55
PES
inside-out
Φ225×1902
55
0.02
Note: The element model (membrane performance, appearance size) not mentioned can be customized according to the order quantity.
Company Details
Bronze Gleitlager
,
Bronze Sleeve Bushings
and
Graphite Plugged Bushings
from Quality China Factory
Business Type:
Manufacturer
Year Established:
2016
Total Annual:
10000000-15000000
Employee Number:
101~200
Ecer Certification:
Verified Supplier
SINOMEMB Environmental Industry Group founded in 2012, it's a high-tech enterprise group with membrane separation technology as its core. From the original water treatment membrane product development, manufacturers, gradual development to build a high-end separation membrane materials, environmenta... SINOMEMB Environmental Industry Group founded in 2012, it's a high-tech enterprise group with membrane separation technology as its core. From the original water treatment membrane product development, manufacturers, gradual development to build a high-end separation membrane materials, environmenta...