SCADA Automation of Water Treatment & Reuse Projects

Intelligent. Sustainable. Secure — Smart Automation for Every Drop.

Frinso’s SCADA automation solutions bring precision, transparency, and intelligence to Water Treatment, Sewage, Effluent, and Common Effluent Treatment Plants — enabling utilities and industries to optimize treatment performance, reuse treated water, and meet environmental standards efficiently.

Transforming Water Management through Intelligent Automation

Water treatment and reuse facilities face challenges of process efficiency, energy optimization, and regulatory compliance. SCADA automation ensures real-time control, predictive analytics, and operational transparency — empowering operators to maintain quality and reduce costs.

  • 24×7 centralized monitoring of plant operations
  • Real-time data logging & trend visualization
  • Alarm, event, and fault notifications
  • Energy and chemical optimization
  • Compliance reporting and remote management

Unified SCADA Platform for Water Treatment & Reuse Projects

Frinso’s modular IoT + SCADA ecosystem integrates all plant operations through sensors, PLCs, and RTUs, connected to a central command dashboard — enabling complete digital supervision of processes from water intake to discharge and reuse.

  • Cloud + On-premise hybrid data architecture
  • Integration with VFDs, analyzers, flow meters, and dosing systems
  • Automatic pump/valve control via PLC logic
  • Remote access dashboards (Web & Mobile)
  • Real-time alarms and performance reports

Smart Automation for Potable Water Production (WTPs)

  • Sedimentation: Real-time turbidity and sludge level monitoring
  • Filtration: Automatic backwash and differential pressure control
  • Disinfection: Chlorine dosing based on feedback
  • Quality Monitoring: Continuous pH, turbidity, and flow tracking

Instruments: Flow Meters • pH & Turbidity Analyzers • Chlorine Sensors • Level Transmitters • VFDs • PLC/RTU Panels • CCTV Cameras

Stable and efficient potable water production with minimal human intervention.

Intelligent Automation for Sewage Treatment & Water Reuse (STPs)

  • Activated Sludge Process (ASP), SBR, MBR, UASB automation
  • Automatic blower and aeration tank monitoring
  • Treated water reuse for landscaping, cooling & irrigation

Instruments: DO, pH, Flow, Level Sensors • Blower Control • Aeration Tank Monitoring • SCADA Dashboard

Treated water that meets CPCB norms and supports circular water use.

Automated Industrial Effluent Treatment (ETPs)

  • Equalization, pH correction, coagulation & flocculation
  • Aeration, filtration & disinfection control
  • Continuous flow, TSS, COD/BOD monitoring

Instruments: Flow, pH, ORP Sensors • Dosing Pumps • Level Sensors • Energy Meters • CCTV Cameras

Optimized energy, reduced chemical cost, and full environmental compliance.

Shared Treatment for Industrial Clusters (CETPs)

  • Centralized inlet monitoring for multiple industries
  • Sequential automation of pre-treatment & aeration
  • Cluster-level SCADA dashboards for transparency

Instruments: Flow & Level Sensors • PLC/RTU Panels • CCTV Cameras • IoT Gateways

Cost-effective, compliant, and transparent wastewater management for industrial zones.

Centralized Command & Control through SCADA

Frinso’s SCADA architecture ensures multi-layered monitoring, predictive maintenance, and secure real-time control across all treatment systems.

SCADA Architecture

Benefits & Impact Metrics

Water Efficiency

Optimal resource use with reuse & recycling

Automated Control

24×7 monitoring & process automation

Reduced Downtime

Predictive alerts & minimal manual intervention

Energy Optimization

MFM-based energy management & analytics

Data-Driven Operations

AI-enabled insights & performance reports

Environmental Compliance

CPCB/SPCB discharge standard adherence

Digitize, Automate, and Reuse with Frinso SCADA

From WTPs to ETPs, Frinso’s SCADA-driven water management solutions empower utilities and industries to achieve sustainability, efficiency, and compliance — aligned with Smart City, AMRUT 2.0, and ZLD goals.