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Zero Liquid Discharge System

Prominent & Leading Manufacturer from New Delhi, we offer ultra filtration uf system and zero liquid discharge system.
  • Ultra Filtration UF System
  • Ultra Filtration UF System
  • Ultra Filtration UF System
  • Ultra Filtration UF System
Ultra Filtration UF System

Ultra Filtration UF System

Rs 6.5 Lakh  / PieceGet Best Price
Installation ServiceYes
BrandUnistar
ConditionNew
MaterialPVDF
Warranty1 Years
Automatic GradeAutomatic
We have gathered huge recognizance by developing highly demanded Ultrafiltration UF. We are instrumental in developing these plants in variety of materials; however we make sure to keep the efficiency standards high.

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  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
  • Zero Liquid Discharge System
Zero Liquid Discharge System

Zero Liquid Discharge System

Rs 12.8 Lakh  / PieceGet Best Price

Product Brochure

Installation TypePrefabricated
Capacity (KLD)50 KLD
Application IndustryPharmaceutical & Chemicals
Inlet Flow Rate(m3/day)50 m3/day
Treatment TechniqueClarifier
Inlet Water QualityIndustrial Effluent
Material Of ConstructionMild Steel
Water SourceCommercial Waste Water
Control ModuleAvailable
Automation GradeSemi-Automatic
Deliver TypePAN India
Treatment StagesSecondary Treatment, Primary Treatment
Warranty1 Year
I Deal InNew Only
Country of OriginMade in India
About Product:

Unistar manufacturer  Zero Liquid Discharge System is an excellent solution for various water treatment applications. The effluent treatment plant falls under this category as their common name  etp plant,  etp, effluent sewage treatment plants, common effluent treatment plant, Effluent Treatment Plant of Dairy, Effluent wastewater treatment plant, effluent treatment plant.

The power industry as well as oil & gas, chemical, petrochemicals, mining and other industries generate large volumes of waste water that must be managed.  Commonly these wastewaters are discharged via a plant outfall to a surface water body, an evaporation pond, or in some cases deep well injected.  However, there are growing environmental concerns regarding such discharge practices, which has resulted in the development of Zero Liquid Discharge (ZLD) processes. Zero Liquid Discharge System, Zero Liquid Discharge Plant, zld system, zero liquid discharge plant, zld plant, zero liquid discharge water treatment system

Zero liquid discharge can be defined broadly as a process for maximum recovery of water from a waste water source that would otherwise be discharged.  This water is beneficially reused and the salts, and other solids contained in the waste water are produced and generally disposed of in a landfill.

The drivers for zero liquid discharge include a growing concern by the public about the impact of such discharges on the environment, and in many areas of the world, water is a scarce resource.  Such concern is resulting in increased regulation and limitation of waste water discharges.  Even without regulatory push, many companies in various industries are mandating initiatives for reducing water discharge by recycle reuse, as well as ZLD, to reduce their environmental footprint and improve sustainability.

Zero liquid discharge can be achieved in various ways.  There is no “one size fits all” solution, as the optimal system design is site specific.  The wastewater composition, various streams to be treated, site specific operating costs, footprint availability and other factors are determining factors for an optimal design.

The system objectives for a zero liquid discharge system are to eliminate a liquid waste water discharge, generate solids for landfill disposal or reuse, and to recycle a high-quality water that can be beneficially reused.  The design objectives are to minimize the capital investment and system operating cost, while not significantly impacting the manpower required for operation.  Further, the system must be designed with operational flexibility to meet the facility needs and be safe and reliable.


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