
The Matrix is our advanced modular water treatment platform to remotely operate, monitor & maintain integrating multiple technologies for efficient STP, ETP, WWTP and desalination in a compact, scalable solution.
The Matrix integrates multiple technologies to operate, monitor & maintain wastewater treatment plants. Traditional systems require manual effort for these functions.
Yes, Matrix modules can be added or reconfigured based on changing load, from 5 KLD homes to 1000+ KLD industrial sites.
Matrix includes IoT-based monitoring, sensors for automation, cloud computing, trained operators, MBBR / SBR / MBR / RO / softener / DM processes, UV/ozone disinfection, and AI-driven analytics.
Yes, it supports both STP and ETP modules, allowing integrated treatment of domestic and industrial waste in hybrid facilities.
Yes, Matrix units are pre-fabricated, factory-tested, and delivered ready-to-install, reducing time and cost.
Most units are operational within 7–10 days of delivery, including commissioning and automation setup, depending on site readiness.
Yes, it includes cloud dashboards, SMS/email alerts, and mobile app controls for real-time monitoring and fault detection.
Absolutely. The Matrix is designed for flexibility. Units can be dismantled, relocated, or scaled up with ease as your needs evolve.
The Matrix systems comply with ISO 9001, ISO 14001, CE, and relevant CPCB/SPCB discharge norms, ensuring quality and environmental assurance.
An STP treats domestic sewage by removing contaminants through physical, biological, and chemical processes. It separates solids, breaks down organic matter, and disinfects water, making it safe for non-potable reuse like gardening or flushing.
STPs help manage wastewater responsibly, prevent pollution, meet environmental regulations, and enable water recycling—critical for sustainability in housing societies, hotels, and offices.
Typical STP stages include preliminary treatment (screening), primary treatment (sedimentation), secondary treatment (biological processing), and tertiary treatment (disinfection or filtration) for final water polishing.
We offer STPs from 1 KLD (kilolitre/day) to over 10 MLD (Million litre/day), tailored for residential complexes, commercial spaces, and industrial premises based on water inflow and occupancy.
STP size depends on daily wastewater generation, calculated based on the number of residents or rooms. Calculations are based on the NGT rulebook.
MBBR uses a moving bed bio-reactor, SBR treats sewage in timed batches, and MBR combines membranes with biological treatment. Each has its advantages based on site needs and quality goals.
Yes, properly treated water meets reuse standards and is safe for non-potable applications like irrigation, toilet flushing, and landscaping, helping conserve fresh water.
STPs require to be operated, monitored & maintained 24x7 for system health, weekly for major equipment, and quarterly or annually for servicing, depending on usage and technology.
Yes, we offer advanced STPs with automation, MATRIX, and IoT capabilities for real-time monitoring, eliminating manpower, and optimized performance with alerts and remote access & control.
Absolutely. We offer compact, modular systems that can be retrofitted in basements, parking areas, or open spaces with minimal civil changes and downtime.
ETPs treat industrial wastewater to remove harmful chemicals, heavy metals, and pollutants before releasing it to the environment or reusing it safely.
ETPs treat industrial effluents, which often contain toxic and chemical waste, whereas STPs treat domestic sewage from households or commercial buildings.
ETPs are essential for industries like textile, pharmaceutical, chemical, dairy, food processing, automotive, laundry, hospitals, and manufacturing to meet environmental discharge norms.
Yes, we provide advanced ZLD solutions that recover maximum water, minimize waste, and ensure zero discharge, complying with the highest environmental standards.
Absolutely. Our ETPs are tailored to specific pollutants, flow rates, and industry processes, ensuring compliance and efficiency for each unique requirement.
Key components include equalization tanks, chemical dosing systems, clarifiers, aeration tanks, filters, sludge dewatering units, and disinfection systems.
Our ETPs reduce BOD, COD, TSS, TDS, heavy metals, oils, pH imbalance, and specific industry-related pollutants to meet regulatory norms.
Yes, all our ETP designs meet or exceed Central and State Pollution Control Board standards, ensuring legal compliance and eco-friendliness.
Basic checks are required daily, with chemical replenishment weekly or monthly, and professional servicing recommended quarterly for optimal operation.
Yes, our ETPs support automation, remote diagnostics, cloud data logging, and alerts to reduce manual intervention and enhance performance transparency.
Desalination removes salt and minerals from seawater or brackish water using reverse osmosis (RO) or thermal processes, making it suitable for drinking or industrial use.
We offer both, but RO-based desalination is more common due to energy efficiency and cost-effectiveness for most applications, including coastal and island areas.
We desalinate seawater, brackish groundwater, and highly mineralized surface water to produce clean, potable, or process-grade water.
Cost depends on source water salinity and energy rates, ranging from ₹0.50 to ₹2 per litre. RO systems offer the lowest operating costs over time.
We follow environmental guidelines for safe brine disposal via ocean outfalls or evaporation systems, ensuring minimal ecological impact and compliance.
Yes, we specialize in compact, containerized desalination plants for resorts, ships, islands, and remote areas with no access to fresh water.
We design desalination plants from 10 KLD to over 1000 KLD, depending on project size and application, including modular expandability.
Our RO-based systems are energy-efficient, consuming 3–6 kWh per 1,000 litres. Energy recovery devices further reduce power usage.
Yes, we provide solar-integrated systems ideal for off-grid areas, reducing operational costs and environmental footprint.
With proper maintenance, our plants last 15–20 years. Membranes require replacement every 3–5 years based on water quality and usage.