Ultimaton
BORON
ULTIMATON BORON — energy of flowering and fruit set

ULTIMATON Boron is a high-energy boron–nitrogen fertilizer of a new generation, in which the microelement boron (B) is integrated into an ultimaton matrix activated by a nitrogen component, ensuring high bioavailability, complete solubility, and prolonged action.
The product is intended for foliar application on all agricultural crops, rapidly compensates for boron deficiency, activating the processes of flowering, fertilization, and the formation of grains and fruits.
The product is intended for foliar application on all agricultural crops, rapidly compensates for boron deficiency, activating the processes of flowering, fertilization, and the formation of grains and fruits.
Physico-chemical characteristics
| Composition | Parameters |
| Total nitrogen (N), % | 5,0 |
| Water-soluble boron (B), % | 11,00 |
| Density, g/cm³ | 1,37 |
| рН | 8,0 |
| Water solubility | complete |
BIOENERGETIC ROLE OF BORON FOR PLANTS
Boron (B) is an important regulator of the plant’s energy and metabolic balance: it directs energy to growth points, participates in cell division, pollen and ovary formation, strengthens cell walls, and increases plant resistance to stress, drought, and temperature fluctuations.
Complete flowering and fertilizationBoron is essential for pollen tube growth, pollen germination, and successful fertilization; it regulates cell division and the development of generative organs
Precise carbohydrate transportImproves the movement of sugars to flowering and fruit formation zones, increasing energy supply to reproductive tissues
Cell structureParticipates in the formation of cell walls, strengthening tissues and preventing necrosis of young leaves and shoots
Water–mineral balanceRegulates membrane permeability and improves calcium absorption and movement
Stress resistanceIncreases plant resistance to heat, drought, salinity, and pathogens affecting reproductive organs, as well as to cracking, brittleness, and crop shedding.
During drought — boron enhances plant resistance by helping retain moisture in tissues and maintain cell wall integrity; during sharp temperature fluctuations — it promotes stable cell division and preservation of reproductive functions; under high solar radiation — it increases photosynthetic efficiency and reduces stress from excessive radiation
During drought — boron enhances plant resistance by helping retain moisture in tissues and maintain cell wall integrity; during sharp temperature fluctuations — it promotes stable cell division and preservation of reproductive functions; under high solar radiation — it increases photosynthetic efficiency and reduces stress from excessive radiation
Yield and qualityEnsures full flowering, better fruit set, and increased content of sugars, oils, and vitamins in the yield
UNIQUENESS AND ADVANTAGES
ULTIMATON BORON
Content of boron (B) and nitrogen (N) in the active ultimatone matrix
Rapid absorption through leaves, works at the cellular level
Ensures precise and uniform nutrition
Abundant flowering and stable ovary formation
Enhanced seed and fruit filling
Increased yield and crop quality
Stable performance even under stress conditions
Compatibility with plant nutrition and protection systems
High efficiency in foliar (leaf) and root fertilization
Cost-effectiveness due to high efficiency
RECOMMENDATIONS
FOR USE
| Crop | Application timing | Rate [l/ha] |
| Winter (spring) rapeseed | Autumn (4–6 leaves) | 0,5-1,0 |
| Beginning of vegetation renewal | ||
| Budding (before flowering) | 1-1,5 | |
| Sunflower | 5–7 leaves | 0,5-1,0 |
| Beginning of budding | 1,0-1,5 | |
| Maize | 5–8 leaves | 1,0 |
| Oil flax | 1–2 sprayings from budding stage to seed filling | 0,5-1,0 |
| Soybean, pea, chickpea, lentil | 3rd trifoliate leaf | 0,5 |
| Budding | 0,5-1,0 | |
| Formation of green pods | 0,5-1,0 | |
| Cotton | 2–3 sprayings from the beginning of growth to boll formation | 0,5-1,0 |
| Vegetables | 2–3 weeks after emergence | 0,5-1 |
| Every 10–14 days (twice) | 1,0-1,5 | |
| Potato | Before flowering | 0,5-1,0 |
| After flowering | 1,0-1,5 | |
| Fruit plantations | Fruit plantations | 1-1,5 |
| Beginning of fruit formation | ||
| Fruit filling | ||
| After harvest | 0,5 | |
| Grapes | At shoot length of 20 cm | 0,5 |
| Before flowering | 0,5-1,0 | |
| Cluster formation | 1,0-1,5 | |
| Berry crops | 2–3 applications from budding to full berry filling | 0,5-1,0 |
| Working solution volume [l/ha]: 100-200 – field crops; 400-1000 – fruit plantations | ||