Oxygen-Enriched Systems for Stable Biofloc Performance & Higher Yield

Maintain consistent, oxygen-rich conditions in biofloc cultures with the NICO MATSYA Nanobubble System, supporting microbial balance, improving water quality, and enhancing overall aquaculture productivity.

Check STABLE DO LEVELS Check ACTIVE MICROBIOME Check HIGHER PRODUCTIVITY

The Challenge Of Oxygen Management In Biofloc Systems

Biofloc systems depend heavily on microbial activity and high stocking densities, making stable dissolved oxygen levels critical for both aquatic species and beneficial microorganisms.

High Oxygen

High Oxygen
Demand

Dense microbial populations and aquatic species create continuous oxygen demand.

Microbial Imbalance

Microbial
Imbalance

Insufficient oxygen disrupts beneficial bacteria, affecting floc formation and stability.

Ammonia Accumulation

Ammonia
Accumulation

Poor oxygenation reduces microbial efficiency in converting toxic compounds.

Water Quality

Water Quality
Instability

Fluctuating conditions can lead to system crashes and productivity loss.

Stress in High-Density

Stress in High-Density
Culture

Low oxygen levels increase stress and reduce growth performance.

THE NICO MATSYA SOLUTION

Stabilized Dissolved Oxygen for Active Biofloc Systems.

The MATSYA system infuses biofloc water with ultra-fine oxygen nanobubbles that remain stable and evenly
distributed, ensuring continuous oxygen availability for both aquatic species and beneficial microbial communities.

Patchy Growth

Enhanced Oxygen Availability

Meets the high oxygen demand of dense biofloc
cultures.

Patchy Growth

Active Microbial Support

Promotes beneficial bacteria for stable floc formation and
nutrient cycling.

Patchy Growth

Improved Water Quality

Reduces ammonia and maintains system stability.

Patchy Growth

Higher Culture Efficiency

Supports better growth, survival, and overall productivity
in intensive systems.

Product

Bring oxygen-driven balance and efficiency to your
biofloc operations with MATSYA

Stabilize Your Biofloc System Today