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Fertilizer capable of increasing nutrition of tea tree planting soil

A soil and nutrition technology, applied in the field of fertilizers to increase the nutrition of tea planting soil, can solve the problems of restricted respiration, hindered absorption of water and inorganic salts, unfavorable plant growth, etc., so as to reduce production costs, promote polymerization, and increase nutrients. Effect

Inactive Publication Date: 2019-03-15
ANHUI DONGFANG TEA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In the development cycle of tea trees, after long-term use, the soil will harden after the crop roots absorb water and inorganic salts dissolved in water. Roots absorb water and inorganic salts dissolved in water mainly through active absorption, and this process requires respiration. The function provides energy. When the soil is compacted, the respiration is limited due to insufficient oxygen, which will hinder the absorption of water and inorganic salts by the roots, which is not conducive to plant growth.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

specific Embodiment 1

[0011] A fertilizer for increasing soil nutrition for planting tea trees, which is composed of the following raw materials in parts by weight: 67 parts of poultry manure, 73 parts of corn stalks, 55 parts of bean cake, 16 parts of wheat flour, 12 parts of rice husk powder, and 41 parts of rice bran , 14 parts of dead tree leaves, 10 parts of coconut shell powder, 9 parts of furfural slag, 7 parts of radish sprouts, 4 parts of pectin, 13 parts of distiller's grains, 20 parts of plant ash, 15 parts of bone meal, 8 parts of fly ash, 5 parts of borax, pearls 11 parts of rock, 12 parts of diatom mud, 13 parts of glucose, 5 parts of potassium sulfate, 4 parts of calcium phosphate, 6 parts of indole butyric acid, 17 parts of urea, 13 parts of zinc gluconate, 9 parts of ferrous sulfate, monoammonium phosphate 17 parts, 6 parts of zinc sulfate, 6 parts of tetrahydrofuran, 4 parts of sodium borate, 10 parts of potassium chloride, 14 parts of amino acids, 22 parts of ammonium nitrohumate,...

specific Embodiment 2

[0013] A fertilizer for increasing soil nutrition for planting tea trees, which is composed of the following raw materials in parts by weight: 63 parts of poultry manure, 69 parts of corn stalks, 47 parts of bean cake, 15 parts of wheat flour, 10 parts of rice husk powder, and 39 parts of rice bran , 12 parts of dead tree leaves, 8 parts of coconut shell powder, 8 parts of furfural slag, 5 parts of radish sprouts, 3 parts of pectin, 8 parts of distiller's grains, 17 parts of plant ash, 13 parts of bone meal, 5 parts of fly ash, 3 parts of borax, pearl 9 parts of rock, 10 parts of diatom mud, 12 parts of glucose, 4 parts of potassium sulfate, 3 parts of calcium phosphate, 4 parts of indole butyric acid, 15 parts of urea, 10 parts of zinc gluconate, 7 parts of ferrous sulfate, monoammonium phosphate 14 parts, 5 parts of zinc sulfate, 4 parts of tetrahydrofuran, 3 parts of sodium borate, 9 parts of potassium chloride, 12 parts of amino acid, 19 parts of ammonium nitrohumate, 9 par...

specific Embodiment 3

[0015] A fertilizer for increasing soil nutrition for planting tea trees, which is composed of the following raw materials in parts by weight: 59 parts of poultry manure, 65 parts of corn stalks, 42 parts of bean cake, 13 parts of wheat flour, 8 parts of rice husk powder, and 35 parts of rice bran , 10 parts of dead tree leaves, 6 parts of coconut shell powder, 7 parts of furfural slag, 4 parts of radish sprouts, 2 parts of pectin, 5 parts of distiller's grains, 15 parts of plant ash, 10 parts of bone meal, 3 parts of fly ash, 2 parts of borax, pearls 8 parts of rock, 7 parts of diatom mud, 10 parts of glucose, 3 parts of potassium sulfate, 2 parts of calcium phosphate, 1 part of indole butyric acid, 10 parts of urea, 8 parts of zinc gluconate, 6 parts of ferrous sulfate, monoammonium phosphate 12 parts, 3 parts of zinc sulfate, 3 parts of tetrahydrofuran, 1 part of sodium borate, 8 parts of potassium chloride, 10 parts of amino acid, 17 parts of ammonium nitrohumate, 8 parts o...

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PUM

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Abstract

The invention discloses a fertilizer capable of increasing nutrition of tea tree planting soil. The fertilizer capable of increasing the nutrition of the tea tree planting soil comprises the followingraw materials: 59-71 parts of feces of livestock and poultry, 65-81 parts of maize straws, 42-59 parts of bean cakes, 13-18 parts of wheat flour, 8-15 parts of rice hull powder, 35-45 parts of rice bran, 10-15 parts of dead leaves, 6-12 parts of coconut shell powder, 7-11 parts of furfural residues, 4-10 parts of radish sprouts, 2-5 parts of pectin, 5-15 parts of vinasse, 15-21 parts of plant ash, 10-16 parts of bone meal, 3-9 parts of coal ash, 2-6 parts of borax, 8-14 parts of perlite, 7-14 parts of diatom ooze, 10-15 parts of glucose, 3-6 parts of potassium sulphate, 2-5 parts of calcium phosphate, 1-7 parts of indolebutyric acid, 10-20 parts of urea, 8-15 parts of zinc gluconate, 6-10 parts of ferrous sulfate, 12-20 parts of monoammonium phosphate, 3-7 parts of zinc sulfate, 3-7 partsof tetrahydrofuran, 1-5 parts of sodium borate, 8-11 parts of potassium chloride, 10-16 parts of amino acid, 17-24 parts of ammonium nitro-humate, 8-12 parts of hydroxy calcium phosphate and 37-43 parts of clear water in parts by weight. The fertilizer capable of increasing the nutrition of the tea tree planting soil, disclosed by the invention, has the advantages that soil hardening can be avoided, and the soil can also be loosened through combined use of an organic fertilizer and an inorganic fertilizer, and therefore, the soil structure is comprehensively improved.

Description

technical field [0001] The invention relates to the technical field of fertilizers, in particular to a fertilizer for increasing soil nutrition for planting tea trees. Background technique [0002] The natural conditions for tea plantation include landform, climate, soil type, etc. The terrain is dominated by hills, and the drainage conditions are better. Abundant precipitation, small annual temperature difference, large temperature difference between day and night, long frost-free period, and good light conditions are suitable for the growth of various types of tea trees, especially for the growth of large-leaved tea trees. From the end of winter to the beginning of summer, there is more sunshine, and summer and autumn are rainy and foggy (Yunnan tea area). Less sunshine is conducive to the overwintering of tea trees and the accumulation of nutrients, which is conducive to the quality of tea in summer and autumn. Brick red soil, brick red soil red soil, mountain red soil ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C05G3/00C05G3/04C05G3/80
CPCC05B7/00C05G3/00C05G3/80C05B17/00C05C3/00C05C9/00C05C11/00C05D1/00C05D1/02C05D9/00C05D9/02C05F3/00C05F5/002C05F5/006C05F5/008C05F11/00C05F11/08C05F11/10
Inventor 陈绍存
Owner ANHUI DONGFANG TEA
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