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WWW™ ArxZyme™ Pulp and Paper

Target Hard COD in Pulp & Paper Processing

Optimized Bioaugmentation Solution for Challenging Lignocellulosic Waste Streams

Improve your pulp and paper wastewater treatment capabilities with ArxZyme™ Pulp and Paper, an innovative biological solution specifically engineered to tackle the most challenging aspects of pulp processing waste streams. Our specialized blend of bacteria and enzymes directly targets hard COD from liquor and lignocellulosic compounds that traditionally resist conventional treatment methods.

Where standard biological treatments fall short, ArxZyme™ Pulp and Paper excels through its carefully selected consortium of microorganisms with proven lignocellulose degradation capabilities. This advanced formulation rapidly establishes robust biological activity, accelerating the breakdown of complex organic compounds while improving settling and reducing problematic foaming issues common in pulp facility operations.

By addressing both immediate treatment challenges and long-term operational stability, our solution helps facilities maintain consistent compliance while reducing operational costs. From specialty paper manufacturers to large-scale pulp processing facilities, operators trust ArxZyme™ Pulp and Paper to deliver reliable performance in managing their most difficult waste streams.

Advanced Formulation Features:

  • High-strength dry/liquid blend featuring specialized lignocellulose-degrading bacteria and enzymes
  • Engineered for rapid establishment and reduced lag phase in challenging waste streams
  • Available in both powder (2.27×1012 CFU/lb) and liquid formats (2.76×1011 to 1.02×1013 CFU/gallon) for flexible application options
  • Optimized for performance in high-inhibition environments typical of pulp processing
Key Benefits
  • Effective Breakdown of Resistant Lignocellulosic Compounds
  • Decreased BOD levels
  • Minimized Inhibition and Toxicity Events
  • Superior Flocculation and Settling Characteristics
  • Enhanced Rutrient Removal Efficiency
  • Reduced Foaming and Filamentous Growth
Applications
  • Pulp and Paper ProcessingPrimary treatment for hard COD reduction
  • Specialty Paper ManufacturingTarget treatment for unique waste streams
  • High-Strength Industrial WasteManagement of complex organic compounds
  • Biological Treatment SystemsEnhancement of existing processes
Recommended Analysis
  • BOD: Nitrogen: Phosphorus Ratio Ensure balanced nutrient conditions
  • Health Panel Comprehensive monitoring including BOD, COD, Nitrogen, Phosphorus, pH and TSS
  • Oxygen Uptake Measure biological activity and treatment capacity
  • pH Monitoring
  • Inhibition Panel Identify potential toxic compounds affecting treatment, includes QAA/PAA analysis, microscopy, OUR and MLSS
  • Microscopy Visual assessment of microbial health and diversity
Frequently Asked Questions

How quickly can I expect to see results after implementing ArxZyme Pulp and Paper?

Most facilities observe initial improvements in hard COD reduction within 2-3 weeks of proper application, with optimal performance achieved within 4-6 weeks as the bacterial population establishes.

Will this product affect my existing biological treatment processes?

No, ArxZyme Pulp and Paper is designed to complement existing biological treatments while specifically targeting hard COD components that traditional processes struggle to break down.

How does temperature affect the performance of ArxZyme Pulp and Paper?

The product performs optimally between 15-35°C (59-95°F), with specialized strains selected for resilience across typical pulp processing temperature ranges.

Can this product help reduce our chemical treatment costs?

Yes, many facilities report significant reductions in chemical usage for foam control and settling aids after implementing ArxZyme Pulp and Paper as part of their treatment strategy.

What monitoring parameters are most important for optimizing performance?

Key monitoring parameters include COD reduction rates, microscopy for bacterial population health, pH levels, and regular analysis of BOD:N:P ratios to ensure optimal nutrient balance for biological activity.

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