Ultimaton
Silicon
ULTIMATON SILICON — energy of structural strength and immune protection

ULTIMATON Silicon is a new-generation bioenergetic product in which silicon (Si) is integrated into an active ultimatonic matrix, ensuring high bioavailability and deep penetration into plant tissues. This is not just a source of silicon — it is the energy of structural reinforcement that forms cell strength, stress resistance, and long-term plant protection at the molecular and membrane levels.
The product is intended for foliar application on all agricultural crops, especially during periods of active growth, stress, and yield formation. Effective on acidic, alkaline, saline, and compacted soils
Physico-chemical characteristics
| Composition | Parameters |
| Water-soluble silicon (Si), % | 13,0 |
| Water-soluble potassium (K₂O), % — 20.0 | 20,0 |
| Density, g/cm³ | 1,28 |
| рН | 12 |
| Water solubility | complete |
Silicon (Si) is an element of structural stability, immune memory, and adaptive strength of plants, especially under conditions of modern agroecosystems.
BIOENERGETIC ROLE OF SILICON FOR PLANTS
Architect of cellular strengthSilicon integrates into cell walls and epidermal tissues, enhancing their mechanical strength. The plant becomes resistant to lodging, less vulnerable to mechanical damage, and protected from the penetration of pathogens and pests
Physical and biochemical shieldForms a microstructured silicon barrier on the leaf surface that prevents the penetration of fungal spores, reduces damage by pests (aphids, thrips, bugs), and enhances systemic resistance to diseases (powdery mildew, septoria, rust, cercospora, etc.)
Water balance regulatorReduces excessive transpiration, increases drought tolerance, improves tolerance to high temperatures, enhances salt tolerance, and supports adaptation to saline soils
Photosynthesis enhancerSilicon increases the active area of the leaf blade, improves chloroplast efficiency, and enhances sugar accumulation
Immune modulatorActivates the plant’s own defense mechanisms, enhances the synthesis of protective compounds, increases resistance to abiotic stresses (heat, cold, UV radiation, heavy metals), and reduces sensitivity to root parasites and pathogens
Yield enhancementPromotes the formation of healthy, well-filled grains, fruits, and berries, improves shelf life, and increases product stability during storage
UNIQUENESS AND ADVANTAGES
ULTIMATON Silicon
The Ultimaton matrix transforms silicon from a “passive structural element” into an active biofunctional factor operating within plant physiology
The synergistic action of potassium and silicon provides powerful biostimulatory and immunoprotective effects
Instant bioavailability of silicon when applied foliarly
Deep penetration into tissues and cell membranes
Strengthening of cell walls at the molecular level
Formation of a physical and biochemical barrier against diseases, pests, drought, cold, and salinity
Prevention of lodging in cereal and industrial crops
Increase in yield, quality, and commercial value of production
RECOMMENDATIONS FOR USE
| Crop | Application timing | Rate [l/ha] |
| Cereal crops (wheat, barley, rye) | Tillering | 0,5-1,0 |
| Stem elongation | ||
| Beginning of heading | 1-1,5 | |
| Winter (spring) rapeseed | Beginning of vegetation renewal | 0,5-1,0 |
| Budding (before flowering) | 1,0-1,5 | |
| Sunflower | Budding | 0,5-1,0 |
| Sugar beet | Leaf closure in rows | 0,5-1,0 |
| Leaf closure between rows | 1,0-1,5 | |
| Soybean | Budding | 0,5-1,0 |
| Formation of green pods | ||
| Cotton | 1–2 sprayings from the beginning of growth to boll formation | 0,5-1,0 |
| Vegetables | 2–3 weeks after emergence until the flowering stage | 0,5-1,0 |
| Potato | 2–3 weeks after emergence | 0,5-1,0 |
| After flowering | ||
| Fruit plantations | Pink bud stage | 0,5-1,0 |
| Beginning of fruit formation | 1,0-1,5 | |
| Fruit filling | ||
| Grapes | Before flowering | 0,5-1,0 |
| Cluster formation | 1,0-1,5 | |
| Working solution volume [l/ha]: 100-200 – field crops; 400-1000 – fruit plantations | ||