Long-effect compound fertilizer containing sulfur with high nitrogen, production method and application thereof
A compound fertilizer and long-acting technology, applied in urea compound fertilizers, nitrogen fertilizers, inorganic fertilizers, etc., can solve the problems of nitrogen content reduction and environmental pollution in compound fertilizers, and achieve the goal of increasing nitrogen content, protecting the environment, and low production costs Effect
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Embodiment 1
[0066] a. Raw material crushing: crush various raw materials separately, pass through a 60-120 mesh sieve, and set aside;
[0067] b. Preparation of granule component A (dihydrate gypsum modified urea granules): accurately weigh 60% of 60 parts by weight of the urea component=36 parts by weight, 20 parts by weight of gypsum dihydrate, and 60 parts by weight of 10 parts by weight of the additive component. %=6 parts by weight, including: 5.4 parts by weight of bentonite, 0.48 parts by weight of diatomaceous earth, 0.12 parts by weight of zinc sulfate borax (1:1) mixture, batching, mixing, granulating, drying, and sieving for subsequent use:
[0068] c. Preparation of particle component B (phosphate rock powder urea composite particles): accurately weigh 40% of 60 parts by weight of the urea component=24 parts by weight, 20 parts by weight of rock phosphate powder, and 40% of 10 parts by weight of the additive component =4 parts by weight, including: 3.6 parts by weight of bento...
Embodiment 2— Embodiment 6
[0072] According to the method and steps of Example 1, the formula in Table 1 is used to generate the sulfur-containing high-nitrogen long-acting compound fertilizer of the present invention.
[0073] Table 1
[0074] raw material Example 2 Example 3 Example 4 Example 5 Example 6 urea 55 65 52 57 63 CaSO 4· 2H 2 o 35 20 24 32 21 Phosphate rock powder 10 15 24 11 16 Bentonite 7.2 10.45 10.8 8.28 9.4 diatomite 0.56 0.44 0.96 0.63 0.48 Zinc sulfate 0.16 0.07 0.18 0.06 0.08 Borax 0.08 0.04 0.06 0.03 0.04
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