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Water Treatment Accessories
Purified Water Self Cleaning Filtration 1T/H To 100T/H 15Mm-900Mm Inlet pipe diameter
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xFeatures | Pre-treatment For Producing Purified Water, Boiler Feedwater, Industrial Process Water, And Drinking Water. | Purpose | Production Of Purified Water, Boiler Feedwater, Industrial Process Water, And Drinking Water Filtration System |
---|---|---|---|
Brand | Tonglida | Material | Stainless Steel, Carbon Steel, Fiberglass |
Product Information | Quartz Sand Filtration, Activated Carbon Filtration, Manganese Sand Filter, Shallow Bed Sand Filtration, Self-cleaning Filtration, Precision Filtration | ||
High Light | self cleaning filtration 1t/h,1t/h precision filtration,100t/h precision filtration |
Product Description:
The filtration system is composed of several different types of filters. These include the quartz sand filter, activated carbon filter, manganese sand filter, shallow bed sand filter, self-cleaning filter, and precision filter. Depending on the user's requirements, various filter media and cartridges with different levels of precision can be chosen.
Under a specific pressure, the system is capable of effectively removing impurities such as suspended solids, organic matter, colloidal particles, and other particles present in turbid water. Furthermore, it can also remove odors and colors, ultimately resulting in high-efficiency filtration and purification of water quality.
This filtration system is widespread across different industries, including power, electronics, beverages, tap water treatment, petroleum, chemicals, metallurgy, textiles, papermaking, food, swimming pools, municipal engineering, and other processes involving industrial water, domestic water, circulating water, and wastewater treatment.
Inlet pipe diameter(mm) | Length(mm) | Weight(kg) | Power(w) | Maximum flow rate(t/h) | Drag coefficient |
15 | 150 | 6 | 15 | 1.8 | ≤0.5 |
25 | 500 | 10 | 15 | 4.9 | ≤0.5 |
40 | 500 | 15 | 20(40) | 12 | ≤0.5 |
50 | 500 | 15 | 20(50) | 19 | ≤0.5 |
65 | 500 | 15 | 30(60) | 28 | ≤0.5 |
80 | 500 | 20 | 30(60) | 50 | ≤0.5 |
100 | 500 | 25 | 50(80) | 80 | ≤0.5 |
125 | 600 | 35 | 60(100) | 125 | ≤0.5 |
150 | 600 | 48 | 80(120) | 180 | ≤0.5 |
200 | 600 | 60 | 100(180) | 320 | ≤0.5 |
250 | 700 | 78 | 120(200) | 490 | ≤0.5 |
300 | 700 | 90 | 150(240) | 710 | ≤0.5 |
350 | 800 | 125 | 200(280) | 970 | ≤0.5 |
400 | 800 | 160 | 250(320) | 1260 | ≤0.5 |
450 | 900 | 200 | 300(360) | 1600 | ≤0.5 |
500 | 1000 | 230 | 300(400) | 1970 | ≤0.5 |
600 | 1000 | 265 | 350 | 2850 | ≤0.5 |
700 | 1200 | 395 | 450 | 3880 | ≤0.5 |
800 | 1200 | 330 | 500 | 5060 | ≤0.5 |
900 | 1200 | 380 | 550 | 6410 | ≤0.5 |
Features:
Pre-treatment is a critical process that is necessary before producing purified water, boiler feedwater, industrial process water, and drinking water. It involves several steps that help to remove impurities and contaminants from the water source.
The first step in pre-treatment is to screen the water to remove large particles such as leaves, debris, and other visible materials. After that, the water is treated with coagulants that help to bring smaller particles together into larger clusters that are easier to remove.
The next step is to subject the water to sedimentation, where the large and heavy particles settle to the bottom of the tank, while the clear water rises to the top. The water is then subjected to filtration, where fine particles and other microscopic contaminants are removed.
Finally, the water is treated with disinfectants such as chlorine or ozone to kill any remaining bacteria, viruses, or other harmful microorganisms. This ensures that the water is safe for consumption and use in various industrial processes.
Technical Parameters:
Efficient filtration is an important aspect of improving water quality. By meeting on-site filtration requirements, various filter media can be chosen to effectively remove impurities such as suspended solids, organic matter, colloidal particles, and microorganisms. This results in cleaner water.
Biological purification further enhances the purification effect by promoting the degradation of organic matter and harmful substances in water.
Through the backwashing and regeneration process, the filtering performance of quartz sand can be restored. This allows for continuous water purification.
When it comes to space-saving, the compact structure and small footprint make this system a great option.
Easy installation is also a key feature of this system. It has simple operation and can be connected directly to the water pipes for immediate use. Additionally, the long service life of this system helps reduce operating costs.
This system also exhibits strong adaptability. It can handle different water qualities and quantities effectively.
Applications:
There are various applications in the industrial sector that require the filtration of process water. This includes the protection of nozzles and heat exchange station water. Effective filtration is necessary to ensure the quality and efficiency of industrial processes.
The use of industrial circulating water is common in a variety of industries such as steel, metallurgy, papermaking, power generation, petrochemicals, food, and air conditioning systems. The filtration of this water is vital to prevent blockages and maintain operational efficiency.
In order to properly manage raw water sources, such as surface water, rivers, lakes and seawater, filtration is often used. With the use of advanced filtration techniques, raw water can be transformed into clean and safe drinking water.
Filtration is also necessary in irrigation systems for agricultural fields, parks, municipal water supplies, and golf courses. The removal of suspended particles and impurities from the water helps to ensure the optimal growth and health of crops and landscapes.
Water filtration is required for a variety of purposes such as aquaculture, swimming pools and water parks. Proper filtration is essential to prevent the spread of diseases and to maintain the cleanliness of water in recreational and commercial facilities.
The applications for filtration systems extend beyond the industrial and recreational sectors, and are also suitable for various industries such as power, electronics, beverages, tap water treatment, petroleum, chemicals, metallurgy, textiles, papermaking, food, swimming pools, and municipal engineering. These systems can effectively manage a range of water sources including industrial water, domestic water, circulating water, and wastewater treatment.