Soil Conditioner | SoilBoost EA 1kg

SoilBoost EA 1kg humic and fulvic acid soil conditioner. Perfect trial size for Malaysian smallholders to boost soil health and crop yields.

Datos clave

Ideal para Palma aceitera, caucho, cacao, durián, plátano, caña de azúcar, arroz, coco
Dosis de aplicación Solución de 500-1000 ppm (aplicación foliar o riego del suelo)
Tamaños de envase 500 g · 1 kg · 25 kg
Fijación de nitrógeno Aumenta la eficiencia en el uso del nitrógeno hasta un 27 %
pH del suelo Óptimo entre pH 6,0 y 8,0; neutraliza los suelos ácidos
Disponibilidad Malasia y el Sudeste Asiático
Cantidad mínima de pedido Póngase en contacto con nosotros para conocer los precios por volumen
Plazo de entrega 3-5 días laborables
Fundada en 2003. Más de 500 proyectos Proveedor del Ministerio de Agricultura

WHAT IS SOILBOOST EA?

SoilBoost EA is a concentrated humic acid soil conditioner formulated for tropical plantation crops. Derived from leonardite, it delivers active humic and fulvic molecules directly to the root zone — improving nutrient uptake efficiency, soil structure, and biological activity across oil palm, rubber, cacao, durian, and associated crops.

 

THE SCIENCE
A 2024 meta-analysis (Ma et al., Agronomy, MDPI) covering multiple crops and environments found that humic acid amendment delivers an average +12% crop yield uplift, +27% improvement in nitrogen use efficiency, and +17% increase in nitrogen uptake. A second landmark meta-analysis (Rose et al., 2014, Advances in Agronomy) across hundreds of studies found average shoot dry weight increases of ~22% and root dry weight increases of ~21% in response to humic substances — with stronger responses (~28%) under high-stress conditions.

 

HOW IT WORKS
SoilBoost EA operates through four proven biochemical pathways:

  • Nutrient chelation — forms stable, water-soluble complexes with iron, zinc, copper, and other micronutrients, keeping them bioavailable rather than precipitated
  • CEC enhancement — increases the soil's cation exchange capacity, preventing leaching of potassium, calcium, magnesium, and ammonium during heavy rainfall
  • Gene upregulation — activates nitrate absorption genes (NRT2.1, MHA2) in plant roots, increasing nitrogen uptake efficiency at the cellular level
  • Organo-mineral complexation — physically protects labile soil carbon from rapid decomposition, building long-term soil fertility

 

OPTIMAL CONDITIONS
Responses are strongest in soils with moderate pH (6–8), annual rainfall above 300 mm, and low baseline nitrogen — conditions that align precisely with tropical plantation soils across Southeast Asia.

 

APPLICATION
Soil drench, fertigation, or foliar application depending on crop stage and target outcome. Best results when used in combination with established leguminous cover crops, which provide the organic substrate for humic molecule activation.

Rendimiento respaldado por investigaciones
Datos contrastados por expertos

En cifras

Evidence from two landmark meta-analyses covering hundreds of peer-reviewed studies across crops, climates, and soil types.

+12%
Average crop yield uplift
Meta-analytic average across multiple crops and environments. Stronger responses under stress conditions.
+27%
Nitrogen use efficiency
Humic acid amendment consistently improves how much of your applied nitrogen is actually taken up by the crop.
+17%
Total nitrogen uptake
Average increase in nitrogen uptake across crops — directly reducing synthetic fertiliser dependency.
~22%
Shoot dry weight increase
Random-effects meta-analysis across hundreds of studies and crop types worldwide.
~21%
Root dry weight increase
Larger, denser root systems mean better nutrient scavenging and drought resilience across plantation crops.
4
Proven mechanisms of action
Nutrient chelation (Fe, Zn, Cu) · CEC enhancement · Gene upregulation (NRT2.1, MHA2) · Organo-mineral complexation.

Humic acid responses are strongest in soils with moderate pH (6–8), annual rainfall >300 mm, and low baseline nitrogen — conditions aligned with tropical plantation agriculture. View Ma et al. 2024 meta-analysis →

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