Water Treatment Tanks
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Located in Chennai, Tamil Nadu, India, we are the notable Manufacturer, Exporter and Supplier of Water Treatment System. Our range of Water Treatment System is inclusive of Wastewater Treatment System and Mineral Water Treatment System. We are backed by a team of adroit professionals, which ensures the water treatment systems are easy to install and promise smooth functioning for a longer period of time. These systems are obtainable from us at cost-effective prices.
SBR Sewage Treatment Plants
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Our company is one of the renowned Manufacturers, Exporters and Suppliers of SBR Sewage Treatment Plants in Tamil Nadu. We bring forth the optimum quality SBR Sewage Treatment Plants that is widely used in municipal corporations, residential complexes, housing societies and many more. Our Municipal SBR Sewage Treatment Plants is thoroughly tested by our expert team before the final dispatch. We provide our Effluent Sewage Water Treatment Plant in a high-grade packaging material to prevent it from any damage or adulteration.
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Flocculator Flash Mixer
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Sewage Treatment Plant
100,000 - 2,000,000 Per piece
We Continuously Work Towards Promoting Green & Sustainable Technology To Upgrade Existing STP/New STP’s. Our Technology Benefit : Ensures 30% savings on capital investment. 85% savings on operation cost Runs without electricity and no manpower to operate the plant. Installation in 48 hours and gives treated water sample. Meets Stringent norms of the pollution control board.
Ultra Filtration Plants
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HATCO offer wide range of UF systems as per customer requirement , we design Ultrafiltration plants for various applications like RO pre treatment, drinking water, ETP, STP and customised requirement. Ultrafiltration is a separation process using membranes with pore sizes in the range of 0.1 to 0.001 micron. Typically, ultrafiltration will remove high molecular-weight substances, colloidal materials, and organic and inorganic polymeric molecules. Low molecular-weight organics and ions such as sodium, calcium, magnesium chloride, and sulfate are not removed. Because only high-molecular weight species are removed, the osmotic pressure differential across the membrane surface is negligible. Low applied pressures are therefore sufficient to achieve high flux rates from an ultrafiltration membrane. Flux of a membrane is defined as the amount of permeate produced per unit area of membrane surface per unit time. Generally flux is expressed as gallons per square foot per day (GFD) or as cubic meters per square meters per day. Ultrafiltration membranes can have extremely high fluxes but in most practical applications the flux varies between 50 and 200 GFD at an operating pressure of about 50 psig in contrast, reverse osmosis membranes only produce between 10 to 30 GFD at 200 to 400 psig. Ultrafiltration, like reverse osmosis, is a cross-flow separation process. Here liquid stream to be treated (feed) flows tangentially along the membrane surface, thereby producing two streams. The stream of liquid that comes through the membrane is called permeate. The type and amount of species left in the permeate will depend on the characteristics of the membrane, the operating conditions, and the quality of feed. The other liquid stream is called concentrate and gets progressively concentrated in those species removed by the membrane. In cross-flow separation, therefore, the membrane itself does not act as a collector of ions, molecules, or colloids but merely as a barrier to these species. Conventional filters such as media filters or cartridge filters, on the other hand, only remove suspended solids by trapping these in the pores of the filter-media. These filters therefore act as depositories of suspended solids and have to be cleaned or replaced frequently. Conventional filters are used upstream from the membrane system to remove relatively large suspended solids and to let the membrane do the job of removing fine particles and dissolved solids. In ultrafiltration, for many applications, no prefilters are used and ultrafiltration modules concentrate all of the suspended and emulsified materials. There are several factors that can affect the performance of an ultrafiltration system. A brief discussion of these is given here. Flow Across the Membrane Surface: The permeate rate increases with the flow velocity of the liquid across the membrane surface. Flow velocity if especially critical for liquids containing emulsions or suspensions. Higher flow also means higher energy consumption and larger pumps. Increasing the flow velocity also reduces the fouling of the membrane surface. Generally, an optimum flow velocity is arrived at by a compromise between the pump horsepower and increase in permeate rate. Operating Pressure: Permeate rate is directly proportional to the applied pressure across the membrane surface. However, due to increased fouling and compaction, the operating pressures rarely exceed 100 psig and are generally around 50 psig. In some of the capillary-type ultrafiltration membrane modules the operating pressures are even lower due to the physical strength limitation imposed by the membrane module. Operating Temperature: Permeate rates increase with increasing temperature. However, temperature generally is not a controlled variable. It is important to know the effect of temperature on membrane flux in order to distinguish between a drop in permeate due to a drop in temperature and the effect of other parameters.
POST TREATMENT
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Post Treatment – refers to the water treatment processes that take place downstream of the Reverse Osmosis Plant System. Post-treatment processes often include disinfection using Micron Catridge Filters, Ultraviolet Sterilisers and Ozonators. It consists of SS Storage Tank and various stage of micron filters followed by UV & Ozonators. DISINFECT WATER MAKING IT SUITABLE FOR THE PURPOSE THROUGH UV RAYS & OZONATION.
disc diffusers
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disc diffusers, fewer head pipes, silicon tube diffusers
Reverse Osmosis Plant
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Advantages of our Reverse Osmosis Plant » Actively rejects ions and contaminants. Reduce water that meets the most demanding specifications. Allow the membrane to continually clean itself. Higher pressure from the pump to push the fluid through the membrane. Capable of rejecting bacteria, salts, sugars, proteins, particles, dyes, and other constituents. Works in various molecular weights.
Water Purifiers
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Clariflocculators
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Clariflocculators, Belt Conveyor, Grit Classifier, Storage Silo
Water Treatment
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Water Treatment, Descaling Chemicals, Water Treatment Chemicals
Commercial Ro Plant
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Commercial Ro Plant, Liquid Defoamer, Boiler Water Treatment Chemical
Industrial Ro Plant
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Activated Carbon, Globe Valve, Solenoid Valve, Pumps
Industrial Ro Plant
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SS Tank Fabrication, Erection Commissioning Services, ultraviolet filters
Water Treatment Plants
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Water Treatment Plants, Water Tank, PVC Pipes, Industrial Pumps
Water Purifier
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Water Purifier
Sewage Treatment Plant
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Sewage Treatment Plant, Fabrication Items, Lifting Equipments
domestic ro
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domestic ro, commercial ro
Demineralisation Plant
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Demineralisation Plant, Solvents, speciality enzymes
Lamella Clarifier
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Lamella Clarifier, belt oil skimmer, agitator assembly, Air Blowers
Effluent Treatment Plants
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Effluent Treatment Plants, Water Treatment Plants, Ro Systems
Water Softening Plant
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Water Softening Plant, Pressure Sand Filters, Softening Plant
well point dewatering system
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well point dewatering system
Water Purifier
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Water Purifier, Ro Water Plant, Water Filter, External Water Purifier
Commercial Ro Plant
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Commercial Ro Plant, Iron Remover, RO System, Water Purifier, Water Softner
Water Treatment Equipment
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Water Treatment Equipment
Water Treatment Plant
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Water Treatment Plant
RO Water System
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RO Water System, RO System Service, ro water purifiers system, RO System
Water Purifier
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Water Purifier