8-21-0+5SO₃

Guaranteed Analysis W/W%
Organic Matter: 15
Total Humic + Fulvic Acid: 10
Total Nitrogen (N): 8
– Ammonium Nitrogen (NH4-N): 8
Total Phosphorus Pentoxide (P2O5): 21
Total Sulfur Trioxide (SO3): 5

FERTIZER 8-21-0+5SO3 fertilizer is designed to be used as a starter fertilizer at the beginning of vegetation in many products. Thanks to our patented fusion technology process, it is a granular fertilizer containing organic matter, humic acid, fulvic acid, nitrogen, phosphorus and sulfur together.

8-21-0+5SO3 fertilizer with high organic matter content extends the time that the phosphorus it contains remains available in the soil. In this way, it contributes to the root development of the plant. The organic matter it contains not only increases the usefulness of plant nutrients, but also encourages the proliferation of beneficial soil microorganisms in the root zone.

This fertilizer, which facilitates the uptake of nutrients by the plant thanks to its humic and fulvic acid content, supports many metabolic events in the plant thanks to its appropriate nitrogen/sulfur ratio.

Application Recommendations

Application: 20-40 kg/da. Adjust the rate based on the specific needs of the crop and growth stage.

Best Practices: Use during early mornings or late afternoons for foliar applications to maximize absorption.

Packaging Options

Available in:

  • 25 kg packages for large-scale farming operations.

General Storage Guidelines

  • Protect the fertilizer from frost, direct sunlight, and moisture.
  • Store loose materials indoors rather than in open areas. Keep doors closed and cover any heaped materials.
  • Since the product is moisture-sensitive, ensure protection from rain and standing water.
  • Follow hazardous material labels on the packaging where applicable.
  • Do not stack more than two pallets. Store only in the original packaging and use the product as soon as possible after opening.

Storage Temperature

  • Avoid exposure to frost and extreme heat.
  • Prevent significant temperature fluctuations during storage.