Mixing urea with water, causes a drop in temperature due to its endothermic reaction. Traditional systems require a hefty 75 kW of heating energy to dissolve urea, whereas our system accomplishes the same with only 15 kW. This results in a lower unit cost and increased profitability.
Each batch in our production takes just about 20 minutes, signifying an efficient and energy-saving process for rapid production. In contrast, conventional systems necessitate a minimum of 2 hours for heating and mixing.
Our automated system precisely controls and mixes urea and water without manual intervention. It continuously monitors and adjusts the percentage of each component in real-time. This dynamic process ensures no wasted batches, saving both time and energy efficiently.
Max 2 staff member is sufficient for our production process. Their responsibilities include loading bags of raw material into the urea hopper, and then they have three hours to monitor the system via the display. After this period, the staff member conducts a quality control check, completing their duties.
ISO 9001
ISO 13485
ISO 14001
We supply the A.TR file. It means that you will not pay Tax on your border.
UAN 4800
CAPACITY: 1 m3/h
ELECTRIC: 380 V – 40 kW
NEEDED AREA: 350 m2
UAN 7200
CAPACITY: 2 m3/h
ELECTRIC: 380 V – 45 kW
NEEDED AREA: 400 m2
UAN 9600
CAPACITY: 3 m3/h
ELECTRIC: 380 V – 60 kW
NEEDED AREA: 450 m2
Characteristics | Unit | Drinking Water (ISO: 10500) | Deionized Water (ISO 22241) |
---|---|---|---|
Aluminum | mg/l Max | 0.03 | 0.5 |
Calcium | mg/l Max | 75 | 0.5 |
Iron | mg/l Max | 0.3 | 0.5 |
Magnesium | mg/l Max | 30 | 0.5 |
Conductivity | μS/m | 5,000-50,000 | 5.5 |
El fertilizante UAN (nitrato de urea y amonio) normalmente contiene dos tipos principales de nitrógeno:
1. Nitrógeno amónico: El nitrógeno amónico se encuentra en forma de iones amonio (NH4+). Está inmediatamente disponible para las plantas tras su aplicación y puede ser absorbido fácilmente por las raíces de las plantas. El nitrógeno amónico tiene carga positiva y se adhiere a las partículas del suelo, lo que reduce el riesgo de lixiviación y lo hace relativamente estable en el suelo.
2. Nitrógeno ureico: la urea es un componente fertilizante nitrogenado sólido del fertilizante UAN. Cuando se aplica al suelo, la urea sufre una reacción química llamada hidrólisis, convirtiéndola en iones de amonio y bicarbonato. Los iones de amonio formados por la hidrólisis de la urea quedan disponibles para las plantas con el tiempo.
Por lo tanto, el fertilizante UAN contiene nitrógeno amónico y nitrógeno ureico, lo que proporciona un suministro equilibrado de nitrógeno a los cultivos. El nitrógeno amónico ofrece disponibilidad inmediata, mientras que el nitrógeno ureico proporciona una liberación gradual y sostenida de nitrógeno en el tiempo, mejorando la eficiencia y utilización de los nutrientes por parte de las plantas.
UAN GRADE | 28 | 30 | 32 | Unit |
---|---|---|---|---|
Urea | 30 | 33 | 35 | % weight |
Ammonium Nitrate | 40 | 42 | 45 | % weight |
Water | 30 | 25 | 20 | % weight |
Density (20℃) | 1.28 | 1.30 | 1.32 | t/m³ |
Salt precipitation temperature | -18 | -10 | -2 | ℃ |
GUARANTEED CONTENT | Mass (w/w)% |
---|---|
Ammonia Nitrogen (N-NH3) | 8 |
Nitrate Nitrogen (N-NO3) | 8 |
Urea Nitrogen (N-NH2) | 16 |
Trace Elements | – |
Water-soluble BORON (B) | 0.01 |
Water-soluble COPPER (Cu) | 0.02 |
Water-soluble IRON (Fe) | 0.02 |
Water-soluble MANGANE (Mn) | 0.01 |
Water soluble MOLYBDENE (Mo) | 0.001 |
Water soluble ZINC (Zn) | 0.002 |
HERB | APPLICATION TIME | FROM LEAF cc/decare (with 100 liters of water) | WITHOUT DRIP IRRIGATION liter/decare (with 1 ton of water) |
---|---|---|---|
Tomato-Pepper Eggplant-Cucumber | From the seedling planting to the growing period | 250-300 | 3-4 |
Watermelon-Melon-Pumpkin | From the seedling planting to the growing period | 250-300 | 3-4 |
Strawberry | During the development period | 250-300 | 3-4 |
Vineyard-Kiwi | 1st application: Before flowering 2nd application: After fruit set 3rd application: 10-15 days after the second application | 250-300 | 3-4 |
Banana | During the development period | 250-300 | 3-4 |
Citrus | 1st application: Before flowering 2nd application: After fruit set 3rd and 4th applications: Until fruit ripens | 250-300 | 3-4 |
Cherry-Cherry-Peach Apricot-Plum | In early development | 250-300 | 3-4 |
Apple-Pear-Quince | In early development | 250-300 | 3-4 |
Olive | In early development | 250-300 | 3-4 |
Corn-Sunflower | From the period when the plant height is 15-20 cm | 300-350 | 3-4 |
Potato-S. Beet Carrot | From the exit | 250-300 | 3-4 |
Wheat-Barley-Paddy | From the beginning of brotherhood | 350-400 | – |
Cotton | From the period when the plant height is 15-20 cm | 300-350 | 3-4 |
Beans-Chickpeas Lentils | From the period when the plant height is 15-20 cm | 300-350 | 3-4 |
Hazelnut-Walnut-Pistachio | In early development | 250-300 | 3-4 |
Vegetables that are eaten with leaves (Lettuce, Curly, Cabbage, etc.) | During the development period | 250-300 | 3-4 |
Onion-Garlic | During the development period | 250-300 | 3-4 |
Green areas- Ornamental Plants | During the development period | 300-400 | 3-4 |
Foliar application doses are applied at intervals of 10-15 days, and drip irrigation doses are applied weekly. |
Reach out to us and join the movement toward a greener and more prosperous tomorrow. Let’s work together to create smart facilities that leave a positive legacy for future generations. Together, we can turn dreams into reality and make a profound difference.
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