KATYAYANI GROWTH SARTHI/BIO NPK LIQUID CONSORTIA FERTILIZER
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Katyayani BIO NPK Consortia – Detailed Information
Product Overview
Katyayani BIO NPK Consortia is a microbial biofertilizer containing a consortium of beneficial microorganisms designed to support the natural availability and utilization of Nitrogen (N), Phosphorus (P), and Potassium (K) in the crop root zone.
The formulation combines functional microbial groups such as:
- Azotobacter
- Azospirillum
- Phosphate-Solubilizing Bacteria (PSB)
- Potassium-Mobilizing Bacteria (KMB)
These microorganisms perform different but complementary functions. Nitrogen-fixing bacteria help biological nitrogen availability, PSB help release otherwise less-available phosphorus, and KMB help mobilize potassium from certain soil minerals.
The overall objective is to improve nutrient availability, root-zone activity, soil biological health, and crop growth as part of an integrated nutrient-management program.
Important: BIO NPK Consortia should generally be viewed as a biofertilizer/biological nutrient-management input, not as a direct one-for-one replacement for all chemical NPK fertilizers. Nutrient contribution depends on soil conditions, microbial survival, crop requirements, and application practices.
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What Is a Bio-NPK Consortium?
A bio-NPK consortium contains multiple beneficial microorganisms that perform different nutrient-related functions.
N → Nitrogen fixation
Microorganisms such as Azotobacter and Azospirillum can contribute to biological nitrogen availability.
P → Phosphorus solubilization
PSB help convert some poorly available forms of soil phosphorus into more soluble forms that plants can utilize.
K → Potassium mobilization
KMB can help release or mobilize potassium associated with certain soil minerals.
Simple concept
Beneficial microbes → Nutrient transformation/mobilization → Improved nutrient availability → Better root nutrition → Healthier crop growth
How BIO NPK Consortia Works
The product operates through several complementary microbial processes.
Step 1 – Application
The microbial formulation is introduced into the crop's root-zone environment, such as through the recommended irrigation system.
Step 2 – Root-Zone Colonization
Under suitable conditions, beneficial microorganisms establish around the rhizosphere.
Step 3 – Nitrogen Support
Nitrogen-fixing microorganisms contribute to biological nitrogen availability.
Step 4 – Phosphorus Solubilization
PSB help convert certain unavailable or poorly soluble phosphorus forms into more available forms.
Step 5 – Potassium Mobilization
KMB help mobilize potassium from suitable soil mineral sources.
Step 6 – Root Development
Some beneficial microbes produce growth-promoting substances that can support root development.
Step 7 – Improved Nutrient Utilization
A biologically active rhizosphere can improve the plant's access to nutrients and support overall crop development.
Recommended Dosage
Based on the information provided:
Drip Irrigation
Dosage: 1.5–2 litres/acre
Water: Approximately 200 litres/acre
Application
The recommended quantity is diluted in water and applied through the drip irrigation system so that the microbial formulation reaches the crop root zone.
Important Conditions for Microbial Biofertilizers
Microbial products are living biological inputs, so their effectiveness can be influenced by environmental conditions.
Soil Moisture
Adequate moisture supports microbial activity.
Temperature
Extreme heat or cold can reduce microbial activity.
Soil pH
Microorganisms perform best within suitable soil-pH ranges.
Organic Matter
Organic matter can provide a favorable environment for soil microorganisms.
Chemical Compatibility
Some pesticides, disinfectants, or highly antimicrobial products may negatively affect beneficial microorganisms.
Therefore, avoid mixing the product with incompatible inputs unless compatibility is confirmed.
