Cultivation technique of organic maize with microelement and probiotics nutrition mixture and selenium rich zinc

A technology of trace element and nutrient mixture, which is applied in the agricultural field, can solve the problems such as not being able to meet the demand, and achieve the effect of inhibiting smut and other diseases and insect pests, comprehensive nutrient elements, and scientific and reasonable formula

Pending Publication Date: 2018-09-21
罗留石
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This invention uses chelated fertilizer, which is still a chemical fertilizer in essence, and cannot meet the current people's demand for organic food

Method used

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  • Cultivation technique of organic maize with microelement and probiotics nutrition mixture and selenium rich zinc

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Experimental program
Comparison scheme
Effect test

Embodiment 1

[0040]The trace element and probiotic nutrient mixture in the embodiment of the present invention is divided into three components: nutrient component, trace element component, and probiotic component. According to the mass percentage of the whole component, they are respectively: The element component is 26% and the probiotic component is 20.4%, of which: the mass percentage of each element in the nutrient component is urea 35.4%, P 2 o 5 7.8% and K 2 O56.8%.

[0041] The probiotic components are humic acid and superoxide dismutase. Selenium is nano-organic selenium; zinc is zinc sulfate; sulfur is ammonium sulfate; boron is boric acid; iron is ferrous sulfate; manganese is manganese chloride; copper is copper oxide; molybdenum is sodium molybdate. Calcium is calcium chloride. Magnesium is magnesium sulfate. Among them, the mass percentage of each element in the trace element component: Selenium 0.096%, Zinc 0.294%, Sulfur 29.989%, Boron 0.31%, Iron 2.99%, Manganese 2.98...

Embodiment 2

[0043] The trace element and probiotic nutrient mixture in the embodiment of the present invention is divided into three components: nutrient component, trace element component, and probiotic component. According to the mass percentage of the whole component, they are respectively: Element component 25.5% and probiotic component 20.2%, of which: the mass percentage of each element in the nutrient component is urea 34.8%, P 2 o 5 8.2% and K 2 O57.0%.

[0044] The probiotic components are fulvic acid and Bacillus megaterium. Selenium is nano-organic selenium; zinc is zinc nitrate; sulfur is ammonium sulfate; boron is sodium borate; iron is ammonium ferric sulfate; manganese is manganese chloride; copper is copper carbonate; molybdenum is sodium molybdate. Calcium is calcium chloride. Magnesium is magnesium chloride. Among them, the mass percentage of each element in the trace element component: Selenium 0.1%, Zinc 0.296%, Sulfur 29.97%, Boron 0.293%, Iron 3.0%, Manganese 2....

Embodiment 3

[0046] The trace element and probiotic nutrient mixture in the embodiment of the present invention is divided into three components: nutrient component, trace element component, and probiotic component. According to the mass percentage of the whole component, they are respectively: The element component is 26.1% and the probiotic component is 20.0%, of which: the mass percentage of each element in the nutrient component is urea 35.1%, P 2 o 5 7.6% and K 2 O57.3%.

[0047] The probiotic components are humic acid and fulvic acid. Selenium is nano-organic selenium; zinc is zinc chloride; sulfur is ammonium sulfate; boron is boric acid; iron is ferrous sulfate; manganese is manganese sulfate; copper is copper nitrate; molybdenum is sodium molybdate; calcium is calcium chloride; magnesium for magnesium sulfate. Among them, the mass percentage of each element in the trace element component: Selenium 0.098%, Zinc 0.31%, Sulfur 29.906%, Boron 0.31%, Iron 2.988%, Manganese 3.01%, C...

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Abstract

The invention relates to the technical field of agriculture and in particular relates to a cultivation technique of organic maize with microelement and probiotics nutrition mixture and selenium rich zinc, which is characterized in by including nutrient element components, trace element components and probiotic components, wherein the nutrient element components consist of urea, P2O5 and K2O; the trace element components consist of selenium, zinc, sulfur, boron, iron, manganese, copper, molybdenum, calcium and magnesium; the probiotic components consist of one or more combinations of amino acids, fulvic acid, humic acid, alginic acid and superoxide dismutase. Compared with the prior art, the cultivation technique of organic maize has the advantages that the content of selenium in a corn isup to 4.52 mg / kg and the content of the zinc in the corn is up to 15.1 mg / kg. The nutrition of corn, coupled with the high content of organic selenium, zinc, calcium, magnesium and other elements, canmeet needs of human bodies, improve immunity and prevent cancer, and enhance the ability of crops to resist drought and lodging.

Description

technical field [0001] The invention relates to the field of agricultural technology, in particular to a cultivation technology of trace element and probiotic nutrient mixture and selenium-enriched and high-zinc organic corn. Background technique [0002] Corn is an important food crop and an important source of feed. It is also the food crop with the highest total output in the world, higher than that of rice. Corn contains a lot of nutritional and health-care substances, and the glutathione it contains is an anti-cancer factor. The riboflavin, vitamins and other nutrients contained in corn have a great effect on preventing heart disease, cancer and other diseases. Corn contains a large amount of plant cellulose, which can accelerate the elimination of toxins in the body, and natural vitamin E can promote cell division, delay aging, lower serum cholesterol, and prevent skin lesions. Corn is rich in vitamin C, which has longevity and beauty effects. The nutrients contained...

Claims

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Application Information

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IPC IPC(8): C05G3/00C05G3/04A01C21/00C05G3/80
CPCA01C21/005C05B17/00C05G3/00C05G3/80C05C9/00C05C11/00C05D1/00C05D3/00C05D5/00C05D9/02C05F11/02C05F11/08
Inventor 罗留石
Owner 罗留石
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