potassium humate
BHUMI AGRO 22 Jul 2026

What is Potassium Humate? Benefits, Uses and Dosage in Agriculture

Have you ever read the label on humic acid fertilizer and seen this term “Potassium Humate”?

And wondered what this means. Then you are not alone.

Potassium Humate is the commercial form of humic acid. It is what humic acid becomes when it is processed into a water-soluble product that can actually be applied to fields and gardens.

In this guide, we will discuss what potassium humate is, how it is made, what it does, how to use it, and the correct dosage.

What is Potassium Humate?

Potassium humate is the potassium salt of humic acid. It is a highly effective organic soil-conditioner and plant growth stimulant produced by treating leonardite or lignite with potassium hydroxide.

It contains a complex mixture of humic acids, fulvic acids, and naturally associated minerals. It is used in agriculture as a soil conditioner, bio-stimulant and fertilizer efficiency enhancer. 

What Does Potassium Humate 98 Mean? 

You have probably seen “potassium humate 98” on fertilizer labels. The “98” is a measure of purity, quality, and solubility. A 98% potassium humate means it contains 98% pure potassium humate with the least impurities; the remaining 2% consists of naturally occurring moisture and inert organic trace elements, making it one of the highest forms available.

However, for agriculture, what matters more than purity is how much humic acid content it contains. A 40% potassium humate product contains 40% active humic acid substances, which is enough effective for farm application.

Potassium Humate Composition: 

Component Detail
Humic Acid Primary active component — 40% to 70% in quality products.
Potassium 8% to 12% — provides additional potassium nutrition.
Fulvic Acid Present naturally in small amounts within humic substances.
Moisture Less than 15% in powder form.
Form Water-soluble powder or liquid concentrate.

 

Potassium humate is generally represented as a polymer with carboxyl and hydroxyl functional groups bound to potassium, which is what gives both its water solubility and its ability to chelate nutrients in soil.

What is the Difference Between Humic Acid and Potassium Humate?

The difference between humic acid and potassium is the most commonly asked question about potassium humate. So, here are some of the characteristics of both of them.

Feature Humic Acid (Raw) Potassium Humate (Salt Form)
Chemical State Raw organic acid in its natural form Natural humic acid + Potassium Hydroxide (KOH)
Water Solubility Insoluble in water (acidic/neutral pH) 100% Water Soluble (slightly alkaline pH)
Primary Source Raw Leonardite, peat, or decomposed organic matter Extracted and refined from Leonardite
How It's Applied Direct soil mixing or granules only Drip irrigation, foliar spray, liquid drench, or soil application
Plant Nutrition Organic soil builder (no added NPK nutrients) Supplies potassium (K) along with humic substances
Speed of Action Slow-release (takes months or years to break down) Fast-acting (available to roots immediately)

Humic acid is the active biological compound used for soil building and potassium humate is humic acid, but water-soluble and more farmer-friendly, combined with potassium. 

When you buy a commercial humic acid product for your farm, you are basically buying potassium humate.

For a complete understanding of humic acid and how it works. Read our complete guide on Humic acid for plants: what it is, how it works, when to use it

What Does Potassium Humate Do for Plants and Soil? 

Potassium humate works simultaneously on two levels- as a soil conditioner and a biostimulant for plants. It does not feed nutrients to the soil like NPK, but makes the surrounding soil healthier and also allows the plant to consume existing nutrients more efficiently.

Unlocks Locked Nutrients

Potassium humate acts as a powerful chelating agent. It binds to the locked minerals and converts them into an organic, water-soluble form that roots can easily absorb.

Improves Soil Structure

Potassium binds soil particles into stable aggregates. It creates a loose, crumbly structure that allows water to infiltrate properly, air to reach root zones and roots to penetrate easily.

Promotes Root Growth

Potassium humate stimulates root elongation and root hair development. A larger root system means the plants can drink more water and absorb nutrients from a wider area of soil. 

For more on why root development matters. Read our complete guide on  Root Development on Plants.

Feeds Soil Microorganisms

The carbon compounds in potassium humate serve as food and energy for beneficial soil bacteria and fungi. By promoting a healthy environment for these microorganisms, it boosts the overall nutrient cycling of soil.

Improves Plant Stress

It acts as an anti-stress agent. It improves the plant's ability to handle drought, extreme heat, cold snaps, transplant shock, and high soil salinity. The potassium component in potassium humate directly supports this stress regulation function.

Enhances Leaf Growth

Potassium humate increases chlorophyll production by helping the plant absorb nitrogen, magnesium, and trace minerals(such as iron). The leaves become visibly greener, broader and more efficient at converting sunlight into food.

Potassium Humate Uses in Agriculture

Field Crops:

Crop Primary Use Key Benefit
Wheat Basal soil application before sowing Improves nitrogen use efficiency and promotes better tillering.
Rice Soil application or drip irrigation Reduces phosphorus fixation in flooded soils and minimizes waterlogging impact.
Maize Pre-sowing soil treatment Enhances root development and improves drought tolerance.
Cotton Drip irrigation throughout the season Improves potassium uptake for better fiber quality.
Soybean Seed treatment and foliar spray Improves nodulation and enhances nitrogen fixation.

Vegetable Crops: 

Crop Best Application Timing Benefit
Tomato Transplanting + every 15 days via drip Faster crop establishment and better fruit quality.
Chilli Pre-transplant soil drench + season-long drip irrigation Improved nutrient uptake and enhanced stress tolerance.
Brinjal At transplanting + vegetative stage Better root development and stronger plant establishment.
Onion Basal application + drip irrigation Improved sulfur and potassium availability.
Potato Pre-planting soil amendment Better tuber development and improved calcium availability.

Soil Types:

Soil Type Why Potassium Humate Helps Indian Region
Black Cotton Soil Unlocks locked nutrients and improves soil aggregation. Maharashtra, Madhya Pradesh, Vidarbha
Alkaline Soils Chelates micronutrients locked by high soil pH. Punjab, Haryana, Uttar Pradesh
Sandy Soils Dramatically improves water and nutrient retention. Rajasthan, Gujarat
Degraded Farm Soil Rebuilds depleted organic matter and soil biology. All intensive farming regions
Red Laterite Soil Improves phosphorus availability. Karnataka, Andhra Pradesh, Telangana

Potassium Humate Dosage

Dosage varies by product concentrations, application types and crop type.The following table is based on a 40% potassium humate formulation, the concentration used in Humking by Bhumiagro: 

Dosage by Application Method: 

Application Method Dosage Frequency
Soil Broadcast (Per Acre) 500 grams to 1 kg Before planting — once per season
Drip Irrigation (Per Acre) 500 ml to 1 litre Every 15 to 20 days
Soil Drench (Per Litre of Water) 2 to 3 ml At transplanting and other critical growth stages
Foliar Spray (Per Litre of Water) 1 to 2 ml Every 15 days
Seed Treatment (Per kg of Seed) 2 to 3 grams Once — before sowing

Dosage by Crop Type:

Crop Recommended Dose Per Acre (Per Application) Method
Vegetable Crops 500 ml — every 15 days Drip Irrigation or Soil Drench
Field Crops 500 grams to 1 kg Soil Broadcast Before Sowing
Fruit Orchards 1 litre — every 20 to 30 days Drip Irrigation or Soil Drench
Rice 500 grams Soil Broadcast Before Transplanting
Severely Degraded Soil 1 to 1.5 kg Soil Broadcast — First Season

Important Dosage Notes:  

  • Always dissolve water completely in a small amount of warm water before adding to full application volume.

  • Do not exceed recommended dosage. More is NOT better. It can temporarily inhibit microbial activity.

  • Higher concentration products need lower dosages. Check the product label before usage.

Conclusion

Potassium humate is not a discovery. It is the commercially available, water-soluble form of one of the most studied and proven soil amendments in agricultural science, which is humic acid. It progressively rebuilds soil health, converting your inputs into results.

 

Frequently Asked Questions

Potassium humate is the potassium salt of humic acid, a water-soluble organic compound produced by treating leonardite or lignite with potassium hydroxide. It is used in agriculture as a soil conditioner, biostimulant and fertilizer efficiency enhancer that improves nutrient availability, soil structure, root development and crop stress tolerance.

For soil broadcasting, apply 500 grams to 1 kg of 40% potassium humate per acre before planting. For drip irrigation, apply 500 ml to 1 litre per acre every 15 to 20 days during the growing season. For soil drench, use 2 to 3 ml per litre of water applied around the root zone at critical growth stages. Always follow the specific product label dosage as concentration varies between products.

Potassium humate cannot be practically produced at home in agricultural-grade concentrations. It requires processing of leonardite or lignite through an alkaline extraction process using potassium hydroxide under controlled conditions. Home compost and vermicompost contain naturally occurring low concentrations of humic substances but at a fraction of the concentration of commercial potassium humate products.

Potassium humate price in India varies significantly by concentration and brand. Agricultural grade 40% potassium humate powder typically ranges from ₹300 to ₹700 per 500 grams depending on brand and concentration. Humiking by Bhumi Agro a 40% potassium humate product is available starting at ₹330. Industrial grade 98% potassium humate in bulk 25 kg bags is priced differently and primarily used for manufacturing rather than direct farm application.

All crops benefit from potassium humate when soil organic matter is low and nutrients are locked. The most dramatic responses are seen in vegetable crops including tomato, chilli and brinjal, particularly at transplanting and during fruiting. Field crops including wheat and maize show significant responses at key growth stages. Fruit crops in alkaline soils, particularly mango, grapes and pomegranate also show strong responses to potassium humate application.