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Preparation method for flower fertilizer of improving soil

A technology for improving soil and flowers, applied in the direction of fertilizer mixture, fertilization device, application, etc., can solve the problems of soil quality decline, environmental pollution, pesticide residues, etc., achieve high utilization rate, reduce physiological diseases, and inhibit growth.

Inactive Publication Date: 2018-01-12
AMB NANJING BIOTECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0015] Aiming at the above technical problems, the present application provides a method for preparing soil-improving flower fertilizers, which solves the technical problems of soil quality decline, environmental pollution and pesticide residues after the use of existing fertilizers.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] Weigh 100 parts of water, 30 parts of magnesium chloride, 10 parts of amino acid calcium, 50 parts of collagen peptide, 5 parts of polyaspartic acid, 5 parts of fulvic acid, 1 part of potassium feldspar, and 10 parts of sorbitol according to the ratio of parts by weight. 4 parts of potassium formate, 8 parts of eggshells, 20 parts of potato vines, 1 part of mannitol, 10 parts of manganese sulfate, 6 parts of bean curd residue and 12 parts of potassium pyrophosphate.

[0031] Put potassium feldspar, potassium formate, egg shell, potato vine, manganese sulfate, bean curd residue and potassium pyrophosphate into the pulverizer for 10 minutes.

[0032] Put the collagen peptide and water into the enamel reaction kettle, heat up to 50°C, mix and stir for 2 hours until the solution is clear, add magnesium chloride, heat up to 60°C, mix and stir at constant temperature for 5 hours until the solution is clear.

[0033] Then add the remaining raw materials, keep the temperature a...

Embodiment 2

[0037] Weigh 100 parts of water, 50 parts of magnesium nitrate, 30 parts of amino acid calcium, 70 parts of collagen peptide, 15 parts of polyaspartic acid, 15 parts of fulvic acid, 5 parts of potassium feldspar, sorbitol 30 parts, 8 parts of potassium formate, 12 parts of eggshell, 24 parts of yam vine, 5 parts of mannitol, 20 parts of manganese sulfate, 10 parts of bean curd residue and 18 parts of potassium pyrophosphate.

[0038] Put potassium feldspar, potassium formate, egg shell, potato vine, manganese sulfate, bean curd residue and potassium pyrophosphate into the pulverizer for 20 minutes.

[0039] Put the collagen peptide and water into the enamel reaction kettle, heat up to 70°C, mix and stir for 3 hours until the solution is clear, add magnesium nitrate, heat up to 80°C, mix and stir at constant temperature for 7 hours until the solution is clear.

[0040] Add the rest of the raw materials, keep the temperature at 90°C, and stir at 1000r / min for 6h.

[0041] Cool ...

Embodiment 3

[0044] Weigh 100 parts of water, 40 parts of magnesium acid, 20 parts of amino acid calcium, 60 parts of collagen peptide, 10 parts of polyaspartic acid, 10 parts of fulvic acid, 3 parts of potassium feldspar, sorbitol 20 parts, 6 parts of potassium formate, 10 parts of eggshell, 22 parts of potato vine, 3 parts of mannitol, 15 parts of manganese sulfate, 8 parts of bean curd residue and 15 parts of potassium pyrophosphate.

[0045] Put potassium feldspar, potassium formate, egg shell, potato vine, manganese sulfate, bean curd residue and potassium pyrophosphate into the pulverizer for 15 minutes.

[0046] Put the collagen peptide and water into the enamel reaction kettle, raise the temperature to 60°C, mix and stir for 2.5h until the solution is clear, add magnesium acid, raise the temperature to 70°C, mix and stir at constant temperature for 6 hours until the solution is clear.

[0047] Add the remaining raw materials, keep the temperature at 80°C, and stir at 800r / min for 5...

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PUM

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Abstract

The application discloses a preparation method for flower fertilizer of improving soil. The method comprises following steps of: weighing water, a magnesium source, calcium amino acid, collagen peptides, polyaspartic acid, fulvic acid, potassium feldspar, sorbitol, potassium formate, eggshells, sweet potato vines, mannitol, manganese sulfate, tofu residue and potassium pyrophosphate; crop resilience is improved by 55% to 65%, the characteristic that the collagen peptides are used to be chelated with other components to form stable small molecular chelate easy to be absorbed by crops is utilized, various amino acids and chelated elements are simultaneously supplemented for crops to generate a synergistic effect, crop growth mechanism can be regulated or improved, soil structure is improvedand soil physical and chemical properties are improved; utilization rate is high, water is saved by 70% to 80%, the number of beneficial microorganisms in the soil is increased by 40 to 60%, soil enzyme activity and soil fertility are improved, degree of soil granulation is enhanced, and soil water retention ability is improved.

Description

technical field [0001] The application belongs to the field of fertilizers, in particular to a method for preparing soil-improving flower fertilizers. Background technique [0002] Collagen Peptides absorb quickly. This is due to its own structure. The molecular structure of collagen peptides is larger than that of amino acids, which determines that when plants absorb collagen peptides, they absorb not only one but multiple amino acids each time. Participate in the regulation of different aspects of plant growth and development, and participate in many life processes such as plant growth, development and stress resistance, especially as a signaling molecule that plays a key role in short-distance information exchange between cells. [0003] Contains all the amino acids needed by plants and a variety of highly active factors, which can induce the production of a large amount of cytokinins and promote the synthesis of chlorophyll, increase the rate and intensity of photosyn...

Claims

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Application Information

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IPC IPC(8): C05G3/04C05G3/00C05G3/80
Inventor 张高荣
Owner AMB NANJING BIOTECH CO LTD