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Efficiency Stainless Steel Sand Filtration Equipment For Water Filtration Flow Rate 18m3/H-3800m3/H
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xFeatures | Pre-treatment For Producing Purified Water, Boiler Feedwater, Industrial Process Water, And Drinking Water. | Material | Stainless Steel, Carbon Steel, Fiberglass |
---|---|---|---|
Purpose | Production Of Purified Water, Boiler Feedwater, Industrial Process Water, And Drinking Water Filtration System | Product Information | Quartz Sand Filtration, Activated Carbon Filtration, Manganese Sand Filter, Shallow Bed Sand Filtration, Self-cleaning Filtration, Precision Filtration |
Brand | Tonglida | ||
Highlight | stainless steel sand filtration equipment,18m3/h precision filtration,18m3/h sand filtration equipment |
Product Description:
The filtration system is composed of various filters including: quartz sand filter, activated carbon filter, manganese sand filter, shallow bed sand filter, self-cleaning filter and precision filter. The system offers a flexibility of different filter media and cartridges, where users can select according to their specific requirements. When under a certain pressure, the system effectively removes various impurities from polluted water, including suspended solids, organic matter, and colloidal particles. Additionally, it can also eliminate odors and colors. Ultimately, this system is highly efficient at filtering and purifying water.
This type of filtration equipment serves a wide range of industries such as power, electronics, beverages, tap water treatment, petroleum, chemicals, metallurgy, textiles, papermaking, food, swimming pools, municipal engineering, as well as other processes. It is suitable for industrial water, domestic water, circulating water and wastewater treatment.
Model number | Flow rate | Inlet and outlet diameter | Drain diameter | Tank diameter | Equipment height | Motor power |
(m³/h) | (mm) | (mm) | ||||
DN40 | 18 | DN40 | DN25 | 219 | 700 | |
DN50 | 20 | DN50 | DN25 | 219 | 700 | 0.18 |
DN65 | 30 | DN65 | DN25 | 273 | 1300 | 0.18 |
DN80 | 40 | DN80 | DN25 | 273 | 850 | 0.18 |
DN100 | 60 | DN100 | DN50 | 273 | 936 | 0.18 |
DN125 | 100 | DN125 | DN50 | 325 | 1018 | 0.37 |
DN150 | 150 | DN150 | DN50 | 325 | 111 | 0.37 |
DN200 | 250 | DN200 | DN50 | 426 | 1427 | 0.37 |
DN250 | 400 | DN250 | DN50 | 426 | 1685 | 0.37 |
DN300 | 500 | DN300 | DN50 | 530 | 2100 | 0.55 |
DN350 | 750 | DN350 | DN80 | 630 | 2085 | 0.55 |
DN400 | 1000 | DN400 | DN80 | 600 | 2360 | 0.55 |
DN450 | 1200 | DN450 | DN100 | 600 | 2632 | |
DN500 | 1500 | DN500 | DN100 | 700 | 2919 | |
DN600 | 2100 | DN600 | DN100 | 800 | 3510 | |
DN700 | 3000 | DN700 | DN200 | 900 | 4100 | |
DN800 | 3800 | DN80 | 1200 |
Features:
Pre-treatment is a crucial step in the production of various types of water, including purified water, boiler feedwater, industrial process water, and drinking water. This step involves the removal of impurities and contaminants from the source water, ensuring that the final product is safe, clean, and suitable for its intended use.
For purified and drinking water production, pre-treatment typically involves multiple stages, including sedimentation, filtration, and disinfection. These processes work together to remove physical, chemical, and biological contaminants, such as suspended solids, microorganisms, and dissolved substances, from the source water.
When producing boiler feedwater and industrial process water, pre-treatment is equally important. Without proper pre-treatment, contaminants in the source water can cause scaling, corrosion, and other types of damage to expensive equipment, leading to increased downtime and maintenance costs. Pre-treatment processes for these applications typically include chemical treatment, ion exchange, and membrane filtration.
In summary, pre-treatment plays a critical role in ensuring the quality and purity of various types of water. Whether it's for drinking, industrial processes, or other applications, pre-treatment is an essential step that cannot be overlooked.
Technical Parameters:
Efficient filtration is an essential factor in ensuring clean water supply on-site. Fortunately, different filter media can be utilized to improve water quality and effectively remove impurities such as suspended solids, organic matter, colloidal particles, microorganisms, among others.
Biological purification, on the other hand, enhances the filtration effect by further degrading organic matter and harmful substances in the water. The result is an even cleaner and purified water, suitable for drinking, irrigation, and other purposes.
The process of backwashing and regeneration of the filter media is also crucial in ensuring efficient water purification. Through this process, the filtering performance of the quartz sand can be restored, enabling continuous water filtration.
Considering the limited space available, the compact structure and small footprint of the filtration system can effectively save space, making it suitable for deployment within small areas.
The system's easy installation and simplicity of operation make it an ideal solution, and it can be directly connected to the inlet and outlet water pipes for immediate use. The filtration system boasts a long service life, which helps reduce operating costs significantly.
Finally, the filtration system exhibits excellent adaptability, making it suitable for different water qualities and water quantities. Its ability to adapt makes it an ideal solution for various water filtration requirements.
Applications:
Industrial process water undergoes filtration for different purposes such as nozzle protection and heat exchange station water. With the use of filtration systems, unwanted particles are removed, ensuring the smooth flow of the water.
Industries such as steel, metallurgy, papermaking, power generation, petrochemicals, and air conditioning systems require filtration of circulating water. The process involves removing unwanted particles and pollutants to improve water quality. Filtration is also essential in the food industry to ensure that the water used is free of contamination.
Water filtration is crucial in the treatment of raw water, which may come from different sources such as surface water, rivers, lakes, and seawater. Through the use of filtration, unwanted particles are removed, ensuring water safety and quality.
Irrigation filtration is vital for agricultural fields, parks, golf courses, and municipal water supplies. Filtration systems help improve the water quality to ensure the survival of crops and plants, preventing clogging of irrigation systems and waterlogged soil.
Filtration is also essential in aquaculture, swimming pools, and water parks. With the use of filtration systems, the water is cleaned, ensuring the safety of the swimmers or marine animals. Water quality improves, reducing maintenance requirements for the pools and aquatic facilities.
Various industries, such as power, electronics, beverages, tap water treatment, petroleum, chemicals, metallurgy, textiles, papermaking, food, swimming pools, and municipal engineering, require filtration systems. The systems involve treating industrial water, domestic water, circulating water, and wastewater to ensure water quality and safety.