Super-saturated levels of dissolved oxygen creates better plant health
Find out how high-quality irrigation water with super-saturated levels of dissolved oxygen creates better root zone conditions, plant health
Our Expertise In Agriculture
Explore the fundamentals, benefits, and research of nanobubbles.
Improved water penetration and reduced compaction:
Nanobubbles lower the surface tension of water, allowing it to penetrate soil more effectively. This reduces water pooling and runoff while increasing infiltration to the root zone. In clay soils, nanobubbles promote flocculation, pulling clay particles together into larger aggregates to improve soil structure and reduce compaction.
Healthier, more robust root systems:
The technology saturates irrigation water with high levels of dissolved oxygen (DO), which is crucial for healthy root development and metabolism. This improved aeration helps roots absorb nutrients and water more efficiently, leading to more resilient plants with greater root mass.




Enhanced nutrient uptake:
Nanobubbles improve the availability of nutrients by breaking down larger nutrient aggregates and dispersing ions more evenly throughout the soil. This helps plants absorb nutrients more effectively, increasing nutrient use efficiency and potentially reducing fertilizer requirements.
Increased crop yields:
The combined benefits of improved root health, better nutrient uptake, and enhanced soil conditions consistently lead to increased crop yields. Some studies have shown yield increases of 15% to over 18% in crops such as tomatoes.
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Nanobubbles Research & Development Insights
Appropriate supply of dissolved oxygen contributes to the increase in the income of fish farmers by increasing production and maintaining longer freshness.
Promote Sustainability
By improving both oxygenation and water infiltration, nanobubbles help plants absorb more nutrients, making fertilizer use more efficient, thus increase nutrient uptake.


Proven Benefits
Nanobubble technology go beyond efficiently increasing dissolved oxygen levels. Thanks to their electrochemically charged surface, they attach themselves and degrade organic contaminants, allowing farmers to reduce chemicals, and can be used to remediate the soil health.


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