Organic and inorganic compound fertilizer special for promoting growth and improving disease resistance of lotus roots

A growth-promoting, disease-resistant technology, applied in the direction of organic fertilizers, inorganic fertilizers, urea compound fertilizers, etc., can solve the problems of reducing the economic benefits of lotus root planting, unreasonable fertilizer formula, and poor disease resistance of lotus roots, etc. Occurrence of pests and diseases, improvement of fertilizer utilization rate, and effect of enhancing disease resistance

Inactive Publication Date: 2017-04-26
刘永清
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although there are many kinds of fertilizers on the market, the formulas of the existing fertilizers are often not very reasonable, and the defects of poor disease resistance and slow growth of lotus roots often exist in the process of use, which reduces the economic benefits of lotus root cultivation.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] The present invention proposes an organic-inorganic compound fertilizer specially designed for promoting growth and improving disease resistance of lotus roots. The raw materials include, by weight, 50 parts of fermented chicken manure, 5 parts of wheat straw, 40 parts of fungus chaff, 20 parts of plant ash, and vermicompost 85 parts, 3 parts of urea, 15 parts of ammonium zinc phosphate, 3 parts of ammonium polyphosphate, 12 parts of potassium nitrate, 2 parts of trace elements, 1 part of complex bacteria, 2 parts of humic acid, 2.5 parts of chitosan, 0.5 parts of alginic acid , 0.5 parts of 3,4-dimethylpyrazole phosphate, 0.1 parts of sodium tetraphenylborate, 1 part of ammonium citrate, 0.1 parts of potassium thiosulfate, 1.5 parts of polyaspartic acid, 0.2 parts of dicyandiamide, compound 1.2 parts of sodium nitrophenolate, 0.05 parts of yttrium nitrate, 8 parts of nano-carbon, 0.01 part of rotenone, and 1.5 parts of sucrase.

Embodiment 2

[0019] The present invention proposes an organic-inorganic compound fertilizer specially designed for promoting growth and improving disease resistance of lotus roots. The raw materials include, by weight, 30 parts of fermented chicken manure, 30 parts of wheat straw, 10 parts of fungus chaff, 35 parts of plant ash, and vermicompost 50 parts, 15 parts of urea, 2 parts of ammonium zinc phosphate, 18 parts of ammonium polyphosphate, 3 parts of potassium nitrate, 8 parts of trace elements, 0.1 parts of complex bacteria, 10 parts of humic acid, 0.8 parts of chitosan, 2.8 parts of alginic acid , 0.05 parts of 3,4-dimethylpyrazole phosphate, 0.8 parts of sodium tetraphenylborate, 0.2 parts of ammonium citrate, 0.5 parts of potassium thiosulfate, 0.05 parts of polyaspartic acid, 1.5 parts of dicyandiamide, double nitrification 0.1 part of sodium phenate, 0.8 part of yttrium nitrate, 3 parts of nano carbon, 0.15 part of rotenone, 0.1 part of sucrase.

Embodiment 3

[0021] The present invention proposes an organic-inorganic compound fertilizer specially designed for promoting growth and improving disease resistance of lotus roots. Its raw materials include by weight: 43 parts of fermented chicken manure, 11 parts of wheat straw, 32 parts of fungus chaff, 32 parts of plant ash, and vermicompost 58 parts, 11 parts of urea, 7 parts of ammonium zinc phosphate, 15 parts of ammonium polyphosphate, 5 parts of potassium nitrate, 6 parts of zinc sulfate, 0.4 parts of complex bacteria, 8.8 parts of humic acid, 1 part of chitosan, 2.3 parts of alginic acid , 0.42 parts of 3,4-dimethylpyrazole phosphate, 0.37 parts of sodium tetraphenylborate, 0.69 parts of ammonium citrate, 0.29 parts of potassium thiosulfate, 1.2 parts of polyaspartic acid, 0.7 parts of dicyandiamide, compound 0.6 parts of sodium nitrophenolate, 0.35 parts of yttrium nitrate, 4.5 parts of nano carbon, 0.11 parts of rotenone, 0.6 parts of sucrase, 25 parts of coating material;

[00...

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PUM

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Abstract

The present invention discloses to an organic and inorganic compound fertilizer special for promoting growth and improving disease resistance of lotus roots. The compound fertilizer is prepared from fermented chicken manure, wheat straw, mushroom residue, plant ash, wormcast, urea, ammonium zinc phosphate, ammonium polyphosphate, potassium nitrate, trace elements, compound bacteria, humic acid, chitosan, alginic acid, 3, 4-dimethylpyrazole phosphate, sodium tetraphenylborate, ammonium citrate, potassium thiosulfate, polyaspartic acid, dicyandiamide, sodium nitrophenolate, yttrium nitrate, nanocarbon, rotenone and sucrase. The compound fertilizer is reasonable in formula, balanced in nutrition, capable of promoting the growth of the lotus roots and improving disease resistance of the lotus roots at the same time, and high in fertilizer utilization rate.

Description

technical field [0001] The invention relates to the technical field of fertilizers, in particular to an organic-inorganic compound fertilizer specially used for lotus roots to promote growth and improve disease resistance. Background technique [0002] Lotus root, also known as lotus root, belongs to the rhizome of lotus, which can be used for food or medicine. It is planted in Jiangsu, Zhejiang, Hubei, Shandong, Henan, Hebei, Guangdong and other places in my country. Lotus root is rich in nutrition and delicious in taste. It can be eaten fresh or processed into lotus root powder, sugared lotus root slices, etc. It is a natural tonic and has become one of the necessary vegetables in people's daily life. [0003] The nutrients needed by lotus root during the growth and development process come from the photosynthesis of lotus leaves on the one hand, and from the soil on the other hand. However, the original fertilizer in the soil is limited, and it will become less and less ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C05G3/00C05G3/04C05G3/80
CPCC05B7/00C05G3/00C05G3/80C05G5/30C05C5/00C05C5/02C05C9/00C05D1/00C05D9/00C05D9/02C05F3/00C05F5/00C05F11/00C05F11/02
Inventor 刘永清
Owner 刘永清
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