Bio-fertilizer and method for producing bio-fertilizer
A production method and compound fertilizer technology, applied in the direction of fertilizer mixture, organic fertilizer, inorganic fertilizer, etc., can solve the problems of difficult control of effective viable bacteria content, high production cost, and many production links, so as to reduce equipment investment and equipment maintenance Cost, accelerated growth, enhanced mobility and effects of action
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Embodiment 1
[0024] On June 10, 2010, 7.5 kg of Bacillus subtilis liquid was taken, and the number of effective viable bacteria was more than 4 billion / ml, accounting for 75% of the total weight of the compound bacterial liquid. The number is greater than 600 million / ml, accounting for 25% of the total weight of the composite bacterial solution, which is mixed evenly, and 10 kg of the mixed composite bacterial solution accounts for 1% of the total weight of the material; 500 kilograms of lignite powder (organic matter ≥ 40%) is taken, accounting for 50% of the total weight of the material; 100 kg of urea (nitrogen content ≥ 46%), accounting for 10% of the total weight of the material; 120 kg of monoammonium phosphate (nutrient content ≥ 55%), accounting for 12% of the total weight of the material; taking potassium sulfate 150% kg (nutrient content ≥ 50%), accounting for 15% of the total weight of the material; taking 120 kg of bentonite, accounting for 12% of the total weight of the materia...
Embodiment 2
[0029] On July 6, 2010, 8.56 kg of Bacillus subtilis liquid (effective viable count ≥ 4 billion / g), accounting for 66.87% of the total weight of the composite bacterial liquid, and 4.24 kg of colloidal Bacillus liquid (effective viable count ≥ 600 million / gram) accounting for 33.13% of the total weight of the composite bacterial solution. Mix it evenly, and the total amount of mixed bacterial liquid is 12.8 kg, accounting for 1.42% of the total material; take 540 kg of lignite powder (organic matter ≥ 40%), accounting for 59.87% of the total material; take 50 kg of ammonium sulfate
[0030](nutrient content ≥ 20%), accounting for 5.54% of the total material; taking 80 kg of urea (nutrient content ≥ 46%), accounting for 8.87% of the total material; taking 150 kg of monoammonium phosphate (nutrient content ≥ 55%), Accounting for 16.63% of the total amount of material; taking 69.2 kg of bentonite, accounting for 7.67% of the total amount of material, and the rest of the operation...
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