Reliable Water Treatment Solutions for Safe & Sustainable Water Management
We provide engineered WTP solutions for converting raw water into treated water suitable for drinking, domestic, commercial, institutional and industrial applications.
Each system is selected around the contaminants to be removed, the desired final-water quality and the project application.
01 — 10 systems
01
Conventional Water Treatment Plant
Conventional WTPs combine physical, chemical and filtration processes to treat surface water or other suitable raw-water sources.
Typical process: Raw Water → Screening → Coagulation → Flocculation → Clarification → Filtration → Disinfection → Treated Water
Municipal water treatmentResidential developmentsInstitutionsCommercial projectsIndustrial water supply
02
Pressure Sand Filter Plant
Pressure Sand Filters remove suspended particles and turbidity through granular-media filtration.
A compact filtration stage that can be combined with activated-carbon and membrane systems.
Effective suspended-solids reductionCompact installationSimple operationSuitable as pretreatment for advanced systems
03
Activated Carbon Filter Plant
Activated Carbon Filters are used to reduce taste, odour, chlorine and certain organic contaminants, depending on water quality and carbon media selected.
Used as a focused adsorption stage within drinking-water, commercial and industrial treatment trains.
Drinking-water treatmentCommercial water treatmentIndustrial process waterRO pretreatmentWater polishing
04
Iron & Manganese Removal Plant
Specialized treatment systems can be designed for groundwater containing elevated iron and manganese.
The treatment configuration may include oxidation, aeration and catalytic or filtration media depending on raw-water characteristics.
Borewell-water treatmentGroundwater purificationIndustrial waterInstitutional water systems
05
Water Softening Plant
Water softeners are designed to reduce hardness-causing calcium and magnesium ions through ion-exchange technology.
Softening can be used as pretreatment for selected industrial applications.
Reverse Osmosis uses a semi-permeable membrane to reduce dissolved salts and other contaminants.
The system is selected based on feed-water chemistry, recovery target, required product-water quality and concentrate-management requirements.
Drinking-water purificationBorewell-water treatmentIndustrial process waterHigh-TDS water treatmentWater recovery and reusePretreatment / post-treatment combinations
07
Ultrafiltration (UF) Plant
Ultrafiltration is a membrane-based process used primarily for removing suspended solids, colloids and microorganisms, depending on membrane characteristics and operating conditions.
UF can sit upstream of RO or support surface-water and wastewater-polishing applications.
Fine filtrationCompact footprintConsistent treated-water qualityUseful as RO pretreatmentSurface-water and wastewater polishing
08
Membrane Water Treatment Plant
Different membrane technologies can be integrated according to the required water quality.
UF – Ultrafiltration · NF – Nanofiltration · RO – Reverse Osmosis. Membrane selection depends on the contaminants to be removed and desired final-water quality.
EDI combines ion-exchange technology with electricity to produce high-purity water and is commonly integrated downstream of suitable pretreatment and RO systems.
An advanced high-purity stage for water systems with demanding final-water requirements.
A typical WTP may include the following connected stages. Not every project requires every stage; the treatment train is selected after evaluating raw-water analysis and intended use.
01
Raw Water Collection
02
Screening / Pretreatment
03
Coagulation & Flocculation
04
Clarification
05
Pressure Sand Filtration
06
Activated Carbon Filtration
07
Softening / Specialized Treatment
08
UF / RO / Advanced Treatment
09
Disinfection
10
Treated Water Storage
Source-water intelligence
Water quality parameters we consider
Before designing a WTP, important raw-water parameters may include the following physical, chemical and microbiological indicators.
BIS reference
BIS's IS 10500 documentation covers physical, chemical and microbiological requirements and includes parameters such as pH, turbidity, TDS, iron, fluoride, chloride and microbiological indicators.
01
pH
Determines treatment and chemical requirements
02
Turbidity
Indicates suspended particles
03
TDS
Indicates dissolved salts
04
Total Hardness
Determines scaling potential
05
Iron
May cause colour, staining and operational problems
06
Manganese
Can affect colour and taste
07
Chloride
Important for salinity assessment
08
Sulphate
Important for water-quality assessment
09
Fluoride
Important for drinking-water applications
10
Nitrate
Important for drinking-water quality
11
Colour
Determines filtration/adsorption requirements
12
Organic Matter
Influences treatment and disinfection
13
Microbiological Quality
Determines disinfection requirements
Drinking water treatment
Designed from source-water analysis to finished-water quality.
For drinking-water projects, the treatment process should be selected based on source-water analysis and the required finished-water quality.
Depending on the source, a treatment system may incorporate clarification, filtration, activated carbon, membrane treatment and disinfection. The final configuration should be validated through water testing and designed against applicable drinking-water requirements.
ClarificationFiltrationDisinfection
BIS IS 10500:2012
BIS states that IS 10500:2012 prescribes requirements and test methods for drinking water and includes acceptable and permissible limits for specified parameters.
Industrial water treatment
Water quality configured to the process.
Industries often require water with specific chemical and physical characteristics rather than simply potable water.
Treatment can include filtration, softening, RO, DM, EDI and other specialized processes depending on the application.
Boiler-feed water
Cooling-water makeup
Process water
Washing applications
High-purity water
Manufacturing processes
Utility water
FiltrationSofteningRODMEDI
Where our systems work
Applications of our WTP systems
Water-treatment solutions can be designed for residential, municipal, hospitality, healthcare, educational, commercial, manufacturing, pharmaceutical, food and beverage, textile, power, laboratory and process-water applications.
Residential complexes
Domestic and community water supply
Municipal water supply
Source-water treatment at community scale
Hotels & resorts
Reliable water for hospitality operations
Hospitals
Treatment for healthcare facilities
Schools & colleges
Institutional water systems
Commercial buildings
Water for commercial facilities
Manufacturing industries
Process and utility water
Pharmaceutical industries
Controlled-quality process water
Food & beverage industries
Application-led water treatment
Textile industries
Industrial process requirements
Power & utility applications
Boiler, cooling and utility needs
Laboratories
Low-mineral and high-purity water
Process-water applications
Configured to end-use requirements
Smart & automated water treatment
Control the process. See the system.
Modern WTP systems can incorporate automation and instrumentation for monitoring and control, depending on project requirements.
Monitoring and control features are selected around the project requirements.
WTP control layer
01PLC-based automation
02HMI control panels
03Flow meters
04Pressure monitoring
05pH monitoring
06Conductivity / TDS monitoring
07Automatic valve operation
08Chemical dosing control
09Online water-quality monitoring
10Alarm and safety systems
Why choose our solutions
Built around the water, not a template.
Our WTP capabilities follow the approved project approach from analysis through long-term support.
Customized plant design
Water-analysis-based process selection
Modular and scalable configurations
Compact system options
Automated operation
Energy-conscious design
RO and membrane integration
Industrial and potable-water solutions
Installation and commissioning support
Operation and maintenance support
Our water treatment approach
A clear path from analysis to dependable operation
We develop customized WTP solutions that help clients improve water quality, reliability, resource efficiency and water reuse.