Water and Wastewater Treatment

Solution Group

Industry

Utilities
Energy and Utilities

PoC Duration

Iotellect Match

2-10 days
AI powered Low Code IoT/IIoT Platform

Build full-stack industrial automation solutions for water treatment and distribution facilities upon a powerful IIoT platform. Enhance water quality by removing contaminants and pathogens, ensuring safety and regulatory compliance. Enable resource recovery, such as nutrients and energy, and minimize environmental impact by preventing harmful pollutant discharge. Instill timely adjustments and proactive maintenance, while innovations in treatment methods, like membrane filtration and UV disinfection, drive continuous improvement.

Iotellect is a low code IIoT platform. It is a common foundation for the full stack of Industry 4.0 solutions and off-the-shelf products ranging from softPLC, HMI and SCADA up to MES, EAM, and predictive maintenance. Iotellect helps you to monetize your industrial IoT know-how by dramatically lowering labor costs and cutting time-to-market for your product, service, or solution. It allows business-oriented automation and digitization professionals to join the development process by converting their IIoT market knowledge directly into product features and specific value delivered to your end customers.

Build Your IoT Application

Connect Your

Water and Wastewater Treatment Equipment

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PLCs
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Smart meters
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IIoT gateways
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Drones and UAV control systems
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Sensors
for water flow, pH levels, turbidity, etc.
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Filtration systems
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Disinfection units
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Pumps
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Chemical feed systems
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Aeration equipment
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Settling tanks and clarifiers
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Sludge treatment devices
(centrifuges, belt presses, filter presses)
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Digesters
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Automated valves and actuators
  • Usage of programmable logic controllers (PLCs) and automated control systems to manage treatment processes, adjust settings, and respond to real-time data
  • Connectivity with energy management systems to monitor and optimize energy usage across treatment processes, including pumps, aeration systems, and heating elements
  • Implementation of role-based access controls to ensure that different users (operators, managers, engineers) have appropriate access to system controls and data, enhancing security and operational efficiency
  • Configuration of automated escalation procedures for critical alarms, ensuring that issues are addressed promptly by the appropriate personnel
  • Support for cloud-based data storage and processing, allowing for scalable access to data and analytics from multiple locations and devices, enhancing collaboration and data management

Connectivity and Management

  • Low code integration with Geographic Information Systems (GIS)
  • Low code integration with Laboratory Information Management Systems (LIMS)
  • Low code integration with Energy Management Systems (EMS)
  • Low code integration with SCADA system
  • Low code integration with predictive maintenance platforms
  • Low code integration with Building Management Systems (BMS)

Integration

  • Tracking and analysis of energy usage across treatment processes to identify opportunities for cost savings and efficiency improvements
  • Assessment of the usage of chemicals, energy, and other resources to optimize dosing and operational processes, reducing waste and operational costs
  • Monitoring and analysis of data to ensure compliance with regulatory standards and discharge limits, facilitating timely reporting and adjustments
  • Modeling of different operational scenarios and their impacts on treatment performance, allowing for strategic planning and decision-making based on simulated outcomes
  • Identification of unusual patterns or deviations from normal operation, such as spikes in contaminant levels or equipment malfunctions, enabling early intervention
  • Utilization of historical data and machine learning algorithms to forecast future system performance, potential equipment failures, and maintenance needs, improving planning and reducing downtime
  • Analysis of historical data to identify trends in water quality, consumption patterns, and treatment efficiency, aiding in predictive maintenance and process optimization

Analytics

  • Visual representation of treatment facilities and infrastructure, with real-time data overlays for monitoring system components and locations
  • Support for responsive design or dedicated mobile applications, allowing users to monitor and manage treatment systems from smartphones or tablets
  • Interactive control and adjustment of system settings, such as chemical dosages and pump operations, directly from the interface
  • Customization of interface layout as per user preferences, including arranging widgets and data views based on specific needs or roles

UI/UX

Key Features
for Your Water and Wastewater Treatment Solution

Customers and Partners

  • System Integrators
  • Original Device Manufacturers
  • Independent Software Vendors
  • Engineering Companies
  • Government Agencies
  • Utility Companies

Solution Users and Developers

  • Dedicated low code developers
  • SCADA/HMI engineers
  • Industrial automation specialists
  • Hydraulic engineers
  • Environmental experts
Customer success team
Community
Online training

Assistance