High concentration organic boric fertilizer
An organic boron, high-concentration technology, applied in fertilization devices, fertilizer mixtures, applications, etc., can solve the problems of affecting yield, flowering is not real, etc., and achieve the effect of promoting early maturity, strong disease resistance, and high yield
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Embodiment 1
[0007] Embodiment 1: raw material component by weight:
[0008] Boric acid 60
[0009] Diethylamine 20
[0010] Triethanolamine 10
[0011] Copper acetate 0.5
[0013] water 9
[0014] After mixing the above raw materials, pressurize to 0.3±0.05 Mbar at a temperature of 75±5°C, stir and react for 12 hours, cool, leave and age for 6 hours, and adjust the pH value to 6 to obtain the product of the present invention. Its fertilizer effect is shown in Table 1.
Embodiment 2
[0015] Embodiment 2: raw material components by weight:
[0016] Boric acid 50
[0017] Sodium tetraborate 15
[0018] Diethylamine tetraacetic acid 2
[0019] Triethanolamine 10
[0020] Urea 5
[0023] water 14
[0024] After mixing the above raw materials, pressurize at 110±5°C with a pressure of 2.0 Mbar, stir and react for 8 hours, cool, place and age for 8 hours, and adjust the pH value to 6 to obtain the product of the present invention. Its fertilizer effect is shown in Table 1.
Embodiment 3
[0025] Embodiment 3: raw material component by weight:
[0026] Boric acid 70
[0027] Triethanolamine 20
[0028] Manganese nitrate 3
[0029] water 7
[0030] After mixing the above raw materials, pressurize at 65±5°C with a pressure of 0.2±0.02 Mbar, stir and react for 20 hours, cool, place and age for 7 hours, and adjust the pH value to 6 to obtain the product of the present invention. Its fertilizer effect is shown in Table 1.
[0031] mu consumption
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