Plant-derived growth-promoting organic medical fertilizer and preparation method thereof

An organic fertilizer and plant-derived technology, which is applied in the preparation of organic fertilizers, organic fertilizers, and bio-organic part treatment, etc., can solve the problems of easy loss of active ingredients, few organic fertilizers with pests and diseases, and poor durability of efficacy. The effect of increasing health care efficacy, saving planting costs and reducing the amount per mu

Inactive Publication Date: 2011-01-05
田辉勤
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, most of the existing organic fertilizers only focus on the comprehensive utilization of fertilizer efficiency and soil improvement, and few involve the use of organic fertilizers themselves to simultaneously prevent and control pests and diseases.
A few researchers add some plant extracts to organic fertilizers to make organic medicinal fertilizers, but on the one hand, there is an additi

Method used

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  • Plant-derived growth-promoting organic medical fertilizer and preparation method thereof

Examples

Experimental program
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Effect test

Embodiment 1

[0030] Put fern rhizomes (Osmanthus osmanthus, Osmanthus aurantium), leaves of pine trees, rhizomes of leguminous plants (soybean, mung bean), neem tree, and tung oil husks under shading conditions and dry in the shade until the water content is 10% to 20% ( Weight), crushed to ≤5mm powder with a crusher respectively.

[0031] Put chicken manure and pigeon manure under the sun to expose to the sun to kill most of the germs and nematodes, keep the water weight percentage at 10% to 15% (weight), and pulverize.

[0032] Weigh 200 kg of crushed fern rhizomes, add 0.4 kg of fermentation bacteria after sterilization, mix evenly, and keep the temperature of 45 ° C to 50 ° C for independent fermentation for 38 days;

[0033] Weigh 200 kg of crushed pine leaves, add 0.4 kg of fermentation bacteria after sterilization, mix evenly, and keep the temperature of 45 ° C to 50 ° C for independent fermentation for 38 days;

[0034] Weigh 200 kg of crushed leguminous plant rhizomes, add 0.4 kg...

Embodiment 2

[0040] Put the rhizomes of ferns (Osmanthus osmanthus, Osmanthus chinensis), leaves of pine trees, rhizomes of leguminous plants (peas, mung beans, vetch), neem trees, and tung oil husks in the shade and dry in the shade until the moisture content is 15% ~30% (weight), crushed with a crusher to granules of ≤5mm.

[0041] Put chicken manure and pigeon manure under the sun to expose to the sun to kill most of the germs and nematodes, keep the water weight percentage at 15% to 20% (weight), and pulverize.

[0042] Weigh 300 kg of crushed fern rhizomes, add 0.75 kg of fermentation bacteria after sterilization, mix evenly, and keep the temperature of 45°C-50°C for independent fermentation for 30 days;

[0043] Weigh 160 kg of crushed pine leaves, add 0.4 kg of fermentation bacteria after sterilization, mix evenly, and keep independent fermentation for 30 days at a temperature of 45°C to 50°C;

[0044] Weigh 160 kg of crushed leguminous plant rhizomes, add 0.4 kg of fermentation bact...

Embodiment 3

[0050] Put the rhizomes of ferns (Osmanthus osmanthus, Osmanthus chinensis), pine leaves, rhizomes of leguminous plants (peas, red beans), neem trees, and tung oil husks under shading conditions and dry them in the shade until the water content is 5% to 15%. % (weight), crushed with a crusher to granules of ≤5mm.

[0051] Put chicken manure and pigeon manure under the sun to expose to the sun to kill most of the germs and nematodes, keep the water weight percentage at 5% to 10% (weight), and pulverize.

[0052] Weigh 100 kg of crushed fern rhizomes, add 0.15 kg of fermentation bacteria after sterilization, mix evenly, and keep the temperature of 45°C to 50°C for independent fermentation for 40 days;

[0053] Weigh 230 kg of crushed pine leaves, add 0.35 kg of fermentation bacteria after sterilization, mix evenly, and keep the temperature of 45 ° C to 50 ° C for independent fermentation for 40 days;

[0054] Weigh 250 kg of crushed leguminous plant rhizomes, add 0.37 kg of fer...

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Abstract

The invention relates to a plant-derived growth-promoting organic medical fertilizer, and belongs to the technical field of organic fertilizers. The plant-derived growth-promoting organic medical fertilizer comprises the following components in percentage by weight: 10 to 35 percent of pteridophyte rhizome, 10 to 38 percent of pine needle, 10 to 36 percent of leguminous plant rhizome, 2 to 10 percent of neem, 2 to 10 percent of tung oil shell, 10 to 35 percent of chicken manure, 5 to 20 percent of pigeon manure, 0.1 to 1.0 percent of zymophyte and 0.05 to 1.0 percent of beneficial microbial strain. The organic medical fertilizer not only has sufficient fertilizer efficiency for promoting the growth of crops but also can effectively prevent and control pests. The invention also provides a method for preparing the plant-derived growth-promoting organic medical fertilizer.

Description

technical field [0001] The invention relates to an organic fertilizer and a preparation method thereof, in particular to a plant-derived organic medicinal fertilizer with both insecticidal and growth-promoting effects and a preparation method thereof. Background technique [0002] In my country's agricultural production, the widespread use of chemical fertilizers and pesticides has played an irreplaceable role in increasing the production and harvest of grain, melons, fruits, and vegetables; It is increasingly evident that even some places have caused very serious damage to the ecological environment. This kind of damage is mainly reflected in the pollution of water bodies, the reduction of soil fertility, the reduction of fertilizer and water retention capacity, and the deterioration of soil quality. Some chemical harmful components, especially pesticide residues, enter the food chain, which reduces the quality of food and affects people's physical and mental health....

Claims

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Application Information

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IPC IPC(8): C05G3/02C05F17/00C05G3/60
CPCY02W30/40
Inventor 林良宪田勤辉
Owner 田辉勤
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