WTECH

WTECH
WTECH

Biological Treatment Plant - Poultry Fridge

LinhasAbout the case

This project concerns a Biological Wastewater Treatment Plant using Activated Sludge after the Primary Treatment stage to meet the treatment demands of a Poultry Processing Plant. One of the main objectives of the project was to achieve discharge parameters such as COD, BOD, Nitrogen, and Phosphorus. The embedded automation modulates the Aeration System through readings from the DO sensor, while pH correction is performed automatically by reading the pH sensor and acting on the dosing pumps. In addition, through the reading of Redox Potential, it is possible to control the amount of biomass in the system for nitrate removal.

The applied technology successfully met all objectives, and the plant operates with the lowest possible OPEX.

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Challenges

- Efficient integration of the solutions — OXYTARGET Membrane, MIXTARGET AxF, MIXTARGET AxM and CCM with automation — with the existing hydraulic interconnections and structure.


- Ensure proper performance in the secondary clarifier using a scraping bridge, preventing the entrainment of solids.


- To ensure efficiency in aeration and anoxic conditions of the biological process.


- Precise control of chemical dosage according to load variations.


- Efficient homogenization of sludge in the collection tank, preventing sedimentation and pumping difficulties.


Synchronization between physical, biological, and chemical processes.


- Optimization of energy consumption and operational stability.

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Results

- High efficiency in biological treatment using OXYTARGET Membrane and MIXTARGET AxF.


- Improved solid-liquid separation with the scraping bridge in the secondary clarifier.


More precise and efficient chemical dosing through the automated skid.


- Effective sludge homogenization with MIXTARGET AxM, facilitating handling and pumping.


- Complete automation via CCM (Motor Control Center) with automation, ensuring greater control and operational reliability.


- Reduced operational failures and increased system stability.


- Optimization of energy consumption and chemical inputs.


- Improved overall performance of the wastewater treatment plant with greater operational predictability.

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