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Plant Capacity | 5000 LPH |
Water Source Type | River Water |
Application Industry | Residential & Commercial Building |
Automation Grade | Semi Automatic |
Voltage | 380V |
Frequency Range | 50 Hz |
Max Water Recovery Rate | 80% |
Air Blower Power | 0.75 KW |
Number of Filtration Passes | 3 |
Treatment Stages | Primary Treatment |
Installation Required | Yes |
Warranty | 1 Year |
Deliver Type | PAN India |
Country of Origin | Made in India |
A Water Treatment Plant is a facility designed to purify water, making it safe for human consumption, industrial use, or environmental discharge. These plants play a crucial role in maintaining public health, supporting economic activities, and preserving ecosystems by treating raw water from sources like rivers, lakes, reservoirs, or underground wells.
Key Processes in a Water Treatment Plant:Intake and Screening
Coagulation and Flocculation
Sedimentation
Filtration
Disinfection
pH Adjustment
Storage and Distribution
Water treatment plants are vital for ensuring access to clean water, preventing waterborne diseases, and supporting sustainable water management practices worldwide.
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Minimum Order Quantity: 1 Piece
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Material | Mild Steel |
Brand | DYLN WATER TECHNOLOGIES |
Model Name/Number | DWT 5 TR |
Compressor Type | VERTICAL |
Automation Grade | YES |
Color | BLACK |
Cooling Air Flow | 1000LTR |
Additional Information:
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Minimum Order Quantity: 1 Piece
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Pouch Capacity | 250 ML |
Automation Grade | Automatic |
Voltage | 230 V |
Country of Origin | Made in India |
Additional Information:
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Minimum Order Quantity: 1 Piece
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Output Capacity | 2 tons/day |
Automation Grade | Semi Automatic |
Material | Stainless Steel |
Power Consumption | 7 H.P |
Design Type | Standard |
Usage/Application | Adblue Def |
Dimension | 25x45 |
Country of Origin | Made in India |
Additional Information:
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Plant Capacity | 5000 LPH |
Water Source Type | Borewell Water |
Material | SS |
Cleaning Capacity | 100 to 10000 |
Application Industry | Pharmaceutical |
Flow Rate | 10000lph |
Treatment Technique | Mixed Bed Bio Reactor(MBBR) |
Operating Pressure | 25 kg |
Automation Grade | Fully Automatic |
Pipeline | UPVC |
Voltage | 450V |
Max Water Recovery Rate | 80% |
Treatment Stages | Primary Treatment |
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Filter Capacity(Litre/hr) | 2500 LPH |
Usage/Application | Industrial |
Filter Type | Activated Carbon Filters |
Filter Media | Treated Sand |
Type Of Machines | Sand Filtration |
Filter Medium Material | Microfiber |
Auto shut off or Red Strip | YES |
Stainless Steel | NO |
Mild Steel | YES |
PP Aquatech | YES |
Single Phase | 3 PHASE |
Voltage | 380V |
I Deal In | New Only |
Country of Origin | Made in India |
Iron is naturally occurring elements in the earth layer. Iron leaves a reddish-brown colour in the water. The taste of iron content in the water is unpleasant and stains clothing. Hence Iron removal filter or water treatment for Iron removal Filter is mandatory. Iron normally present in water in solvent structure as the ferrous iron (bivalent iron in broke down structure Fe2+ or Fe(OH)+) or complexed structure like the ferric iron (trivalent iron: Fe3+ or hastened as Fe(OH)3). The event of iron in water can likewise have a modern inception ; mining, iron and steel industry, metals erosion, and so forth.
Process of Iron Removal using Iron removal Filter or water treatment for Iron removal?When all is said in done, iron doesn’t present a risk to human wellbeing or the earth, however it brings disagreeableness of a stylish and organoleptic nature. For sure, iron gives a rust shading to the water, which can recolor cloth, clean offices or even nourishment industry items. Iron likewise gives a metallic taste to water, making it horrendous for utilization. It can likewise be at the birthplace of consumption in channels sewers, because of the improvement of microorganisms, the ferrobacteries.
In circulated air through water, the redox capability of the water is, for example, it permits an oxidation of the ferrous iron in ferric iron which hastens then in iron hydroxide, Fe(OH)3, in this way permitting a characteristic expulsion of broke up iron.
4 Fe2+ 3 O2 – > 2 Fe2O3
Fe2O3 + 3 H2O – > 2Fe(OH)3
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