Cultivation method for vanadium-rich peanuts

A cultivation method and technology for vanadium-enriched peanuts, which are applied in the directions of cultivation, plant cultivation, botanical equipment and methods, etc., can solve problems such as difficulty in meeting the needs of vanadium elements, and achieve the effects of increasing health care effects, increasing vanadium content, and promoting nitrogen fixation.

Inactive Publication Date: 2016-11-23
陈国仁
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

According to data analysis, the vanadium content in existing peanut varieties is generally below 44 micrograms per gram, which is difficult to meet

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0023] Example 1

[0024] A cultivation method of vanadium-rich peanuts includes the following steps:

[0025] Step 1. Site preparation and fertilization. Choose light loam soil and sprinkle 1000Kg of organic fertilizer per acre. The organic fertilizer contains the following components by weight: 10 parts of pig manure, 10 parts of sheep manure, 5 parts of soybean meal, 5 parts of straw, and wheat bran 15 parts, 5 parts of siltstone, 1 part of EM mycin, and 1 part of sulfuric acid; the preparation method includes the following steps: (1) Take straw, wheat bran, and soybean meal according to the proportions and put them into a pulverizer to smash; (2) According to the proportions Add sulfuric acid, EM bacterin, pig manure, and sheep manure to the material obtained in step (1), mix uniformly for fermentation, wherein the fermentation temperature is 40-55°C, and the fermentation time is 24h; (3) to the step (2) obtained Add siltstone to the material according to the proportion and mi...

Example Embodiment

[0029] Example 2

[0030] A cultivation method of vanadium-rich peanuts includes the following steps:

[0031] Step 1. Site preparation and fertilization. Choose light loam or sandy loam, and sprinkle 1500Kg of organic fertilizer per acre. The organic fertilizer contains the following components by weight: 15 parts of pig manure, 15 parts of sheep manure, 15 parts of soybean meal, 15 parts of straw, 16 parts of wheat bran, 15 parts of siltstone, 5 parts of EM mycin, and 5 parts of sulfuric acid; the preparation method includes the following steps: (1) Take straw, wheat bran, and soybean meal according to the proportion and put them into a pulverizer to crush; (2) Add sulfuric acid, EM bacteria, pig manure, and sheep manure to the materials obtained in step (1) according to the ratio, and mix them uniformly for fermentation. The fermentation temperature is 40-55°C and the fermentation time is 48h; (3) to step (2) Add siltstone to the obtained material according to the proportion an...

Example Embodiment

[0035] Example 3

[0036] A cultivation method of vanadium-rich peanuts includes the following steps:

[0037] Step 1. Site preparation and fertilization. Choose light loam or sandy loam. Sprinkle 2000Kg of organic fertilizer per acre. The organic fertilizer contains the following components by weight: 12 parts of pig manure, 13 parts of sheep manure, 8 parts of soybean meal, 9 parts of straw, 16 parts of wheat bran, 6 parts of siltstone, 3 parts of EM mycin, and 3 parts of sulfuric acid; the preparation method includes the following steps: (1) Take straw, wheat bran, and soybean meal according to the proportion and put them into a pulverizer for pulverization; (2) Add sulfuric acid, EM bacterin, pig manure, and sheep manure to the material obtained in step (1) according to the ratio, and mix uniformly for fermentation, wherein the fermentation temperature is 40-55°C, and the fermentation time is 24-48h; (3) to step ( 2) Add siltstone to the obtained material according to the prop...

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Abstract

The invention belongs to the field of peanut planting and particularly relates to a cultivation method for vanadium-rich peanuts. The method comprises the following steps that firstly, soil preparation and fertilizer application are carried out, wherein light loam or sand loam is selected, 1000-2000 Kg of organic fertilizer is applied each mu, plowing and ridging are carried out, and the plowing depth ranges from 25 cm to 30 cm; secondly, seeds are selected and sowed, wherein full peanut pods are selected, dried in the sun for 2-3 days and then husked, large and complete seeds are selected from husked peanuts as seed kernels, the seed kernels are soaked with an ammonium vanadate solution with the mass fraction of 0.04% for 24 h and then dried in the shade indoors for 6-7 days, and sowing is carried out at the proper time with the depth of 3-6 cm; thirdly, field management is carried out, wherein when peanuts reach the rosette stage, an ammonium vanadate solution with the mass fraction of 0.1% is sprayed to leaves of peanut plants. The content of vanadium in peanuts obtained in the method is stably maintained at 160-210 micrograms/gram, and the health-care effect of peanuts is greatly improved.

Description

【Technical field】 [0001] The invention relates to the field of peanut planting, in particular to a cultivation method for vanadium-rich peanuts. 【Background technique】 [0002] Peanut is an important economic crop in my country. It is rich in fat and protein, and contains thiamine, riboflavin, niacin and other vitamins. It is also rich in minerals, especially amino acids necessary for the human body, which can promote the development of brain cells. It can be used to develop and enhance memory. It can be used as food or feed. It is not only an important industrial raw material, but also a bulk export commodity. It has a wide range of uses and plays an important role in the national economy. [0003] As an essential trace element for the human body, vanadium plays an important role in the growth and development of the human body, cardiovascular, kidney, sodium and potassium pumps and metabolism. According to data analysis, the vanadium content in existing peanut varieties is...

Claims

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Application Information

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IPC IPC(8): C05G3/04C05C3/00A01G1/00A01C1/00C05G3/80
CPCA01C1/00A01G22/00C05C3/00C05D9/00C05G3/80C05F3/00C05F5/002C05F5/006C05F11/00C05F11/08
Inventor 陈国仁
Owner 陈国仁
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