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Sinoma Water Business Department

Supplier From China
Jun-19-09
Supplier : UF wastewater recycling, concentration and separation plant, waste water treatment

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Contact Details:
R.3311, International Trade Center
Shenzhen 518014
China


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Jun-19-09
 
UF as the cutting edge membrane separation and concentration technology, its role in water and wastewater treatment is important more and more.

We supply the broadest kinds of UF membrane to meet different application below:

Pretreatment of RO; post treatment of MF; terminal treatment for electronic, pharmaceutical; sewage recycling treatment; mineral water production; surface/well water, river, lake clarification; liquid concentration and separation; material recycling;

Materials: PP, PS, PVDF, PSF, PAN
Dia: 4,5,6,8 inch
Length: 20,40,60 inch
Pore Size: 0.01um to 0.1um
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Use only one plant to do hundreds of experiments is come true.
We invented this plant with our rich experience in liquid concentration and separation in bioengineering, food and pharmaceutical, chemical and environmental industries.

We installed three types membrane on it, there are spiral wound, plate (sheet) and tubular membrane. Various precision and materials are accomplished in one plant. Save large cost, and avoid failure and bad operation in big scale projects, help you find out the best solution.

Application:

Bioengineering:
Clarification, concentration, separation of protein, polypeptide, amino acid etc. fermentation products;
Separation, purification, and concentration of biochemical pharmaceutical intermediate; Desalination and refining of synthetic substances.

Food and Pharmaceutical:
Clarification and refining of sugar products; Clarification and concentration of gelatin, starch concentration and pyrogen removal;
Separation, filtration and clarification of plant extracts;
Separation, purification,sterilization, pyrogen removal of oral liquid and preparation;
Removal and concentration of pigment;
Filtration and refining of fruit and vegetable juice.

Chemical and Environmental:
Product desalination;
Separation, purification and refining of high temperature solvent system.
Treatment of oily waste water, ultrafine particle recycling in wastewater.

Installed Membrane:

Spiral Wound Membrane:
Temperature: < deg. 45 C, Material: composite, polyamide, PS, PES, PVDF, Filtration Area:0.3m2
Precision (MWCO): RO, 150Da, 300Da, 1KDa, 2.5KDa, 3.5KDa, 5KDa, 8KDa, 10KDa, 20KDa, 75KDa.

Tubular Membrane:
Temperature: < deg. 100 C, Material: titania, alumina, zirconia, Filtration Area: 60 to 90 cm2
Precision (MWCO):50nm, 200nm, 500nm, 800nm, 1.2u.

Plate (Sheet) Membrane:
Temperature: < deg. 45 C, Material: PS, PES, PVDF, PTEE, Polyamide, Filtration Area: 0.02m2
Precision (MWCO): RO, 150Da, 300Da, 1KDa, 2.5KDa, 3.5KDa, 5KDa, 8KDa, 10KDa, 50KDa, 70KDa, 100KDa, 150KDa, 0.05u, 0.07u, 0.1u, 0.2u, 0.45u, 0.7u, 1.0u, 1.5u, 3u, 5u, 10u, 20u.
Jun-19-09
 
MBR nowadays is the best and most effective to treat domestic water wherever from hotel, villa, labor camp, factory; industry wastewater(pharmaceutical, textile, chemical, food, dairy, etc.); other wastewater from car washing, etc.

Our MBR technology is combined with conventional activated sludge process, make treated water more stable and high quality, save foot print, control easy, lower investment and replacement cost than other technology. The treated water can be recycled into process, irrigation, car wash, and toilet flush.

As key product (submerged hollow fiber MBR membrane) manufacturer, we also install complete system to meet clientÆs different requirement.

We have experienced expert team to supply you the best design and technical support.

Other parameter of membrane:
Model ZCM-08; Material Polypropylene (PP) ;Design Flow 0.8~1.2 m3/day ;Membrane Area 8m2/ pcs ;Operation Pressure -0.01 ~ -0.03Mpa; Outer Diameter of fiber 450um;Wall Thickness of Fiber 40~45um; Pore Size of Fiber 0.1~0.2um; Air Permeability >=7.0x10-2cm3/cm2.s.cmHg; Air-Water Ratio 30:1; Installation Form Horizontal; Bubble Size Fine; Longitudinal Strength 12Mpa; Porosity 40~50%;Turbidity of Purified Water<=0.2NTU.
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Capacity: 100 CMD/500CMD/1000~6000CMD
Origin: Malaysia
Price: USD100K or more
Loading Port: Malaysia/Taiwan
Min Cost: USD100K
Max Cost: USD3M
Guarantee: 5 Years
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Jul-01-25
 
Municipal Water & Wastewater Solutions

Decentralized and sustainable water, wastewater, and reuse solutions. We offers scalable, cost-effective, and rapid-to-deploy systems for municipal, industrial, hospitality, and remote community applications.

Core Technologies & Solutions
1. Modular containerized wastewater treatment using:
MABR (Membrane Aerated Biofilm Reactor)
MBR and activated sludge
For populations of 50 to 3,000 (up to 250,000 GPD)
Energy-efficient, low-maintenance, compact
2. Wastewater treatment upgrades or greenfield plants using MABR:
Retrofit existing plants or build new
Improve effluent quality, increase capacity, reduce energy usage up to 30%
Small or zero footprint, fast installation
3. Pre-packaged extended aeration systems:
For flow rates from 200 to 2 million GPD
Simple operation and installation
Suitable for rural and small municipal systems
4. Shortcut nitrogen removal for high-strength wastewater:
Uses MABR
Reduces energy by 40% and TIN by over 90%

Water Treatment Solutions
1. We Containerized systems for:
Seawater (SW) Up to 1,500 m/day per unit
Brackish water (BW) Recovery rates up to 90%
Freshwater (FW) Up to 5,000 m/day
Pre-engineered, modular, compact, low-energy

Note: The prices provided are for reference only and may be subject to change.
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Key Components of an ETP:

Preliminary Treatment: This involves removing large solids and debris through screening and grit removal.
Primary Treatment: Here, the wastewater is allowed to settle in large tanks, separating solids from liquids. The solids, known as sludge, are removed for further treatment.
Secondary Treatment: This stage typically involves biological processes where microorganisms break down organic matter. Common methods include activated sludge systems and trickling filters.
Tertiary Treatment: This advanced treatment focuses on removing remaining impurities, including nutrients like nitrogen and phosphorus. Techniques can include filtration, chemical treatment, or advanced oxidation.
Disinfection: Before discharge or reuse, the treated water is disinfected to eliminate pathogens, often using chlorine, UV radiation, or ozone.
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