Compound base fertilizer and additional fertilizer for jatropha curcas
A technology of jatropha curcas and base fertilizer, which is applied in the direction of application, fertilization device, fertilizer mixture, etc., can solve the problems of unbalanced fertilizer supply, poor growth of jatropha curcas canopy, low oil content of seeds, etc., and increase organic matter and oxygen content , promote photosynthesis, improve the effect of fruit quality
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Embodiment 1
[0032] Preparation of Amino Acid Chelated Rare Earth
[0033] Weigh 100 kg of feather powder and place it in an enamel reaction kettle, add 200 kg of hydrochloric acid solution with a volume concentration of 28%, and keep the temperature at 110°C to completely dissolve the protein to obtain a mixed amino acid hydrolyzate; measure the amino acid content of the hydrolyzate, add 100 Kilograms of rare earth carbonates containing lanthanum (La) and cerium (Ce) (rare earth content is 43.0% in terms of REO, and the amount added is calculated according to the molar ratio of rare earth elements to amino acids is 1:2.5), and then chelated at 80°C The chelation reaction was continuously stirred for 8 hours; then neutralized with alkaline blast furnace slag at room temperature to a pH value of 6, and finally dried to obtain amino acid chelated rare earths. The measured nitrogen content was 1.5%, and the rare earth content was more than REO counts at 6.7%.
Embodiment 2
[0035] Preparation of compound base fertilizer 1
[0036] Weigh 306 kg of molten calcium magnesium phosphate fertilizer (effective P 2 o 5 content 18%), 223 kg urea (46% N content) and 114 kg potassium chloride (K 2 O content 57%) was added in the reaction tank to react to obtain nitrogen, phosphorus and potassium mixed fertilizer, and then mixed with 300 kilograms of nitrohumic acid (containing 60% of humic acid, and the nitrogen content was 2.5% in terms of N), 8 kilograms of the obtained fertilizer in Example 1 Amino acid chelated rare earth and 5.5 kg of ferrous sulfate (FeSO 4 ·7H 2 O), 4 kg of disodium tetraborate (Na 2 B 4 o 7 10H 2 O), 20 kilograms of manganese sulfate (MnSO 4 ·H 2 O), 5 kg copper sulfate (CuSO 4 ·5H 2 O), 2.5 kg of zinc sulfate (ZnSO 4 ·7H 2 O), 2 kg of ammonium heptamolybdate ((NH 4 ) 6 Mo 7 o 24 4H 2 O), 10 kilograms of bentonites are pulverized and mixed to obtain the compound base fertilizer, the total nitrogen content of the c...
Embodiment 3
[0038] Preparation of compound base fertilizer 2
[0039] Weigh 334 kg of molten calcium magnesium phosphate fertilizer (effective P 2 o 5 content 18%), 248 kg urea (46% N content) and 123 kg potassium chloride (K 2 O content 57%) is added in the reaction tank to react to obtain nitrogen, phosphorus and potassium mixed fertilizer, and then mixed with 240 kilograms of nitro humic acid (containing 60% of humic acid, and the nitrogen content is 2.5% in terms of N), 5 kilograms of the obtained fertilizer in Example 1 Amino acid chelated rare earth and 5.5 kg of ferrous sulfate (FeSO 4 ·7H 2 O), 4 kg of disodium tetraborate (Na 2 B 4 o 7 10H 2 O), 20 kilograms of manganese sulfate (MnSO 4 ·H 2 O), 5 kg copper sulfate (CuSO 4 ·5H 2 O), 2.5 kg of zinc sulfate (ZnSO 4 ·7H 2 O), 2 kg of ammonium heptamolybdate ((NH 4 ) 6 Mo 7 o 24 4H 2 O), 11 kilograms of bentonite are pulverized and mixed to obtain the compound base fertilizer, the total nitrogen content of the com...
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