ACTBIOC+
Advanced Bio-culture for Sustainable Wastewater Treatment

Smart Microbial Solutions for Smarter Water Recovery

ACTBIOC+ is WOG Technologies Limited’ proprietary bio-culture product, engineered to accelerate biological breakdown and improve treatment efficiency across wastewater systems. Designed for both industrial and municipal applications, ACTBIOC+ enhances microbial performance, reduces sludge volume and mitigates the presence of hard-to-treat compounds such as surfactants, hydrocarbons and residual antibiotics in wastewater treatment.

This advanced formulation supports wastewater treatment plants in meeting increasingly stringent discharge norms while optimizing energy and chemical inputs.

What Makes ACTBIOC+ Different

ACTBIOC+ is a next-generation microbial inoculant designed to work in synergy with existing aerobic and anaerobic processes. It enables faster degradation of complex organic matter, improves COD / BOD removal and enhances resilience against shock loads and variable wastewater profiles.

Key benefits include:

  • High resilience against chemical inhibitors and toxic loads.
  • Faster stabilization and startup in new or restarted systems.
  • Effective degradation of antibiotics in wastewater treatment streams.
  • Reduction in sludge yield and improved dewatering performance.
  • Compatible with MBBR, SBR, MBR and traditional activated sludge systems.

Ideal Applications across Water and Wastewater Ecosystems

  • Industrial effluent treatment (textile, pharmaceutical, dairy, chemical)
  • Municipal sewage treatment plants
  • Septic tank rehabilitation and desludging
  • Sludge digestion acceleration in anaerobic digesters
  • Biological polishing in decentralized water treatment units

Why Choose ACTBIOC+ from WOG Technologies Limited

  • Proven performance in both pilot and full-scale applications
  • Compatible with modern and legacy wastewater treatment bio-culture systems
  • Reduces operational disruptions due to fluctuating influent quality
  • Backed by WOG’s technical and engineering support and on-site monitoring services
  • Helps industries to reduce sludge disposal costs and meet environmental metrics

How ACTBIOC+ Works

ACTBIOC+ contains non-pathogenic, facultative microorganisms with high enzymatic activity that break down recalcitrant compounds such as hydrocarbons and phenols. These bacteria form biofilms and function in both aerobic and anaerobic conditions, ensuring stable treatment of variable industrial wastewater.

The product functions through:

  • Bioaugmentation: Enriches microbial diversity and population dynamics
  • Enzyme-driven Breakdown: Accelerates degradation of organic pollutants
  • Competitive Exclusion: Suppresses odor-causing and pathogenic organisms
  • Adaptive Efficiency: Performs across a wide pH and temperature range
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Product Formats and Dosage

Available in liquid concentrate and dry powder formulations
Dosing recommendations are tailored based on:

  • Wastewater characteristics (COD, BOD, toxicity)
  • Reactor type and hydraulic retention time
  • Seasonal temperature fluctuations

WOG’s process team provides on-site diagnostics and performance mapping to ensure optimal use of ACTBIOC+ treatment plants.

Explore the ACTBIOC+ Advantage

Ready to enhance your biological treatment performance and reduce your operational burden? Talk to WOG’s microbial engineering team and discover how ACTBIOC+ can transform your plant’s stability, compliance and efficiency.

FAQs

ACTBIOC+ contains microbial strains specifically selected to break down pharmaceutical residues, including antibiotics, commonly found in industrial and hospital wastewater streams. This helps improve effluent quality and reduces environmental risk.

Yes. ACTBIOC+ is fully compatible with activated sludge, MBBR, SBR and MBR setups. It enhances biological stability and can be introduced without disrupting current operations.

Unlike generic enzyme products, ACTBIOC+ is a synergistic mix of live cultures and active enzymes. It offers adaptive performance across varied load profiles and contributes to long-term plant efficiency.

Absolutely. Its low-maintenance dosing and high resistance to environmental fluctuations make it ideal for decentralized plants or compact ETP/STPs facing load inconsistency.

Under typical operating conditions, improvements in COD/BOD reduction and sludge characteristics can be observed within 7 to 10 days of application. Full optimization timelines vary by influent complexity and treatment setup.

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