MicrobeBio® Energy™ – Energy Series
MicrobeBio® Energy™ – a next-gen bionanotechnology product – enhances plant health and improves crop productivity. The product synthesizes, harmonizes, and energizes the growth environment to enhance the symbiotic cycle. MicrobeBio® Energy™ helps the microbial population flourish exponentially in the soil and around the rhizosphere. Furthermore, the product provides nanoparticles to create an optimal growth condition producing more oxygen. It also improves both nitrogen and carbon cycles in the ecosystem. MicrobeBio® Energy™ results in ideal aeration, an excellent water retention capacity, and reduced salinity in the soil. Therefore, MicrobeBio® Energy™ enhances water uptake in adverse conditions such as drought or soil salinization.
In addition, MicrobeBio® Energy™ restructures the water molecules into tiny clusters and organizes the molecules into passageways in plant cell membranes. Additionally, the product energizes the microorganisms living on the plant (both on stems and leaves) to convert the atmospheric macronutrients and micro-nutrients deposited on the leaves. They are turned into nutrient solutions, helping promote superior plants’ vigor and growth.
MicrobeBio® Energy™ regenerates the humus layer of the degraded topsoil caused by the adverse environment and modern agriculture practices. MicrobeBio® Energy™ – next-gen bionanotechnology – is catalytic to restore nature’s ecosystem while respecting the environment as Mother Nature intended.
Benefit:
- Increase the biodiversity in the soil
- Increases organic matter and builds topsoil
- Enhances soil fertility
- Stimulate a robust population of beneficial microorganisms in the soil
- Improves carbon cycles
- Supplies a steady release of nutrients (including mineral nutrients) to plants
- Balances bioenergetic and biosynthesis
- Promotes root and plant growth
- Regulates pH in alkaline and acid conditions
- Prolongs blooming
- Stimulates root and plant growth
- Accelerates seed germination
- Reduces tillage
- Improves water retention that reduces erosion and soil salinization
- Enhance water uptake in adverse conditions such as drought or soil salinization
- Reduces growth stress
- Improves resistance to pathogens
- Significant increases in yield
- Enhance hydration and bio-availability