Multi-element active bacterial fertilizer and preparation method thereof
A technology of active bacteria and multi-elements, which is applied in the preparation of organic fertilizers, nitrogen fertilizers, organic fertilizers, etc., can solve the problems of poor soil improvement, degradation of crop ecological environment, and decline in crop quality, so as to improve the physical and chemical properties of soil , Improve the utilization rate of chemical fertilizers, and adjust the effect of soil pH
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0023] A multi-element active bacterial fertilizer made of the following components by weight percentage: soybean cake 1.9%, rice husk 9.1%, bagasse 4.8%, furfural residue 59.9%, monosodium glutamate residue 24.2%, copper sulfate 0.025%, ammonium molybdate 0.025 %, zinc sulfate heptahydrate 0.025%, boric acid 0.025%.
[0024] The preparation method of the above-mentioned multi-element active bacterial fertilizer includes the following steps:
[0025] S1, weigh the components according to the following weight percentages: soybean cake 1.9%, rice husk 9.1%, bagasse 4.8%, furfural residue 59.9%, monosodium glutamate residue 24.2%, copper sulfate 0.025%, ammonium molybdate 0.025%, zinc sulfate heptahydrate 0.025%, boric acid 0.025%;
[0026] S2: Mix the raw material components weighed in S1 uniformly and crush them, and then put them into the cooking tank and pass high-temperature steam. The steam is transported from the channel pipes installed at the bottom and wall of the tank and kep...
Embodiment 2
[0044] A multi-element active bacterial fertilizer made of the following components by weight percentage: 1.5% soybean cake, 8.1% rice husk, 5.8% bagasse, 62.9% furfural residue, 21.64% monosodium glutamate residue, 0.015% copper sulfate, 0.015 ammonium molybdate %, 0.015% zinc sulfate heptahydrate, 0.015% boric acid.
[0045] The preparation method of the above-mentioned multi-element active bacterial fertilizer includes the following steps:
[0046] S1, weigh the components according to the following weight percentages: soybean cake 1.5%, rice husk 8.1%, bagasse 5.8%, furfural residue 62.9%, monosodium glutamate residue 21.64%, copper sulfate 0.015%, ammonium molybdate 0.015%, zinc sulfate heptahydrate 0.015%, boric acid 0.015%;
[0047] S2: Mix the raw material components weighed in S1 uniformly and crush them, then put them into the cooking tank and pass high-temperature steam. The steam is transported from the channel pipes installed at the bottom and wall of the tank and kept ...
Embodiment 3
[0056] A multi-element active bacterial fertilizer made of the following components by weight percentage: soybean cake 2.4%, rice husk 8.6%, bagasse 3.8%, furfural residue 57.86%, monosodium glutamate residue 27.2%, copper sulfate 0.035%, ammonium molybdate 0.035 %, zinc sulfate heptahydrate 0.035%, boric acid 0.035%.
[0057] The preparation method of the above-mentioned multi-element active bacterial fertilizer includes the following steps:
[0058] S1, weigh the components according to the following weight percentages: soybean cake 2.4%, rice husk 8.6%, bagasse 3.8%, furfural residue 57.86%, monosodium glutamate residue 27.2%, copper sulfate 0.035%, ammonium molybdate 0.035%, zinc sulfate heptahydrate 0.035%, boric acid 0.035%;
[0059] S2: Mix the raw material components weighed in S1 uniformly and crush them, and then put them into the cooking tank and pass high-temperature steam. The steam is transported from the channel pipes installed at the bottom and wall of the tank and k...
PUM
| Property | Measurement | Unit |
|---|---|---|
| Particle size | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More 
