

Multioxidative System -Pulp and Paper Industry
The pulp and paper industry is one of the largest consumers of water, with its processes generating high volumes of wastewater containing organic matter, suspended solids, and chemical contaminants. Effective treatment is crucial not only for environmental compliance but also for reducing operational costs and improving sustainability.
The Multioxidative System (MOS) presents an innovative solution by enhancing organic and biological decontamination in water treatment. It can be implemented as a standalone treatment or integrated into existing wastewater treatment plants, significantly improving efficiency and reducing chemical consumption. By incorporating MOS, pulp and paper industries can achieve:
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Improved Wastewater Treatment: Enhanced degradation of organic contaminants and reduction of recalcitrant compounds.
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Cost Reduction: Lower chemical usage, reduced sludge generation, and optimized treatment processes.
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Water Reuse Possibilities: Enabling treated water to be recycled back into industrial processes, reducing freshwater intake.
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Regulatory Compliance: Assisting industries in meeting stringent environmental discharge regulations.
With its modular and adaptable design, the Multioxidative System provides an efficient and cost-effective solution to the complex water treatment challenges faced by the pulp and paper industry, aligning with sustainability goals and smart resource management.

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Implementation of the Multioxidative System in the Pulp and Paper Industry
The Multioxidative System (MOS) can be seamlessly integrated into the water and wastewater treatment processes of the pulp and paper industry, addressing the sector’s high water consumption and contamination challenges.
Its flexibility allows for different implementation strategies, including:
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Pre-Treatment Stage:
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Applied before existing wastewater treatment systems to reduce the organic load and improve overall treatment efficiency.
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Minimizes the need for chemicals and enhances biodegradability, optimizing biological treatment processes.
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Integration with Existing Treatment Plants:
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Implemented as an additional treatment stage to improve the removal of recalcitrant compounds, such as lignin derivatives and persistent organic pollutants.
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Reduces sludge generation and chemical demand in secondary treatment stages.
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Final Polishing Stage:
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Placed at the end of the treatment process to ensure compliance with environmental regulations for effluent discharge.
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Enhances water quality, making it suitable for potential reuse within the facility.
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Water Reuse & Resource Optimization:
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Enables water reuse for non-potable applications, such as cooling systems, process water, and general facility cleaning.
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Contributes to sustainable water management by reducing freshwater withdrawal and wastewater disposal costs.
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Benefits and Successful Implementations of the Multioxidative System in the Pulp and Paper Industry
The Multioxidative System (MOS) has been successfully implemented in several pulp and paper mills, delivering exceptional results in water and wastewater treatment. One of its most notable advantages is the significant reduction of contaminants, with observed decreases of 80% to 90% in COD (Chemical Oxygen Demand) and 85% to 99% in turbidity. This ensures a cleaner effluent that meets strict governmental discharge regulations, helping mills maintain compliance and avoid penalties.
Beyond regulatory adherence, the MOS enhances water reuse, allowing treated water to be reintegrated into the production process. This significantly reduces freshwater consumption, leading to substantial cost savings and a more sustainable operation. Additionally, the system optimizes treatment costs by minimizing the need for chemical additives and simplifying treatment processes.
By implementing the Multioxidative System, mills can improve their environmental sustainability, reduce operational expenses, and ensure a more efficient and eco-friendly water management system.

Others Multioxidative Industries Applications
The Multioxidative System has been successfully applied across various industries. Below, you can explore the key industries where it is used, how its application works, why the system is beneficial, and the main advantages it offers to the industry.