| NPK Consortia for Lime |
This advanced microbial formulation is a carefully selected consortium of beneficial bacteria and fungi specifically designed for integration with agricultural lime. It synergistically combines the soil-amending power of lime with the nutrient-mobilizing efficiency of bio-inoculants to deliver superior crop performance and soil health.
The consortia comprises nitrogen-fixing, phosphate-solubilizing, and potash-mobilizing microorganisms. When blended with lime, this product creates a powerful, multi-functional soil amendment that simultaneously addresses soil acidity and nutrient deficiency.
Key Mechanisms of Action:
Synergistic pH Management: The lime (Calcium Carbonate) rapidly neutralizes soil acidity, raising the pH to an optimal range (6.0-7.0). This corrected pH is crucial as it creates a favorable environment for the survival, proliferation, and activity of the introduced beneficial microbes.
Enhanced Nutrient Availability:
Nitrogen Fixation: Free-living bacteria capture atmospheric nitrogen and convert it into plant-available forms.
Phosphate Solubilization: Microbes secrete organic acids that break down insoluble phosphate compounds in the soil, releasing orthophosphates for plant uptake.
Potash Mobilization: Potassium-solubilizing bacteria dissolve silicate minerals, freeing locked potassium into a soluble form.
Improved Soil Structure: The combination promotes better soil aggregation, enhances porosity, and improves water retention capacity.
Benefits:
Corrects Soil Acidity: Effectively raises soil pH, mitigating aluminum and manganese toxicity.
Boosts Fertilizer Efficiency: Reduces dependency on chemical NPK fertilizers by making native soil nutrients bio-available.
Promotes Root Development: Provides a healthier rhizosphere for robust root growth and nutrient absorption.
Increases Crop Yield & Quality: Leads to healthier plants with improved vigor, yield potential, and crop quality.
Sustainable & Cost-Effective: Offers an eco-friendly approach to soil management, improving long-term soil fertility and reducing input costs.
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