Industrial wastewater management
Improve discharge compliance and control your treatment performance without oversizing your facilities.
Thanks to intelligent, real-time monitoring, our solution anticipates changes in incoming load and dynamically adapts treatment cycles. You reduce deviations, limit alarms, and secure your discharges, even in the event of high effluent variability.
Real-time discharge control
Our solution is based on continuous modeling of pollutant loads to adjust treatment cycles in real time. It combines:
Objective:
Improve discharge compliance and reduce energy consumption.
Stabilized effluent quality
The solution anticipates changes in pollutant load (COD, NH₄, etc.) through real-time modeling of the biological operation of the WWTP.
By automatically adjusting aeration settings, it stabilizes discharge quality, even during sudden load variations. This greatly reduces the risk of regulatory exceedances and facilitates performance traceability.


Reduced energy consumption
By predicting incoming loads and continuously evaluating the efficiency of aerators, Purecontrol avoids unnecessary over-treatment.
Aeration is dynamically adjusted to actual demand and prioritized during off-peak pricing periods. This limits aeration times while maintaining the expected treatment performance.
Real-time monitoring of operations
The monitoring platform centralizes all critical data from the wastewater treatment plant (sensors, performance, alerts, history).
Teams can remotely monitor the status of treatment, receive alerts in the event of deviations, and easily document interventions via an integrated logbook. A key tool for ensuring reliable day-to-day operation.

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Water Treatment Manager
Aeration control in wastewater treatment plants

1
During off-peak hours, occasional ventilation to maintain low NH4 levels in anticipation of peak hours.
2
During peak hours, the low NH4 rate ensured in period 1 means that ventilation is not required systematically, while remaining compliant.
3
During off-peak hours, ventilation to minimize NH4 levels in anticipation of the next peak hour.
4
Planning aeration based on predicted NH4 levels and incoming flow rates
From hypervision to control
Simplify daily operations with real-time monitoring and controlDemander à ChatGPT
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