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Plant modeling method

A plant and plant height technology, applied in the field of landscaping, can solve problems such as cost increase, achieve the effects of reducing investment, increasing green space coverage, and slowing down the flow rate of water bodies

Active Publication Date: 2020-12-01
ZHONGKAI UNIV OF AGRI & ENG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This method requires the construction of terraces and drainage ditches, which requires high maintenance during operation and increases the cost

Method used

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Examples

Experimental program
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Effect test

Embodiment 1

[0033]A plant modeling method includes the following steps:

[0034]Step S1: Plant a number of water pine trees at the required density in the nutrient soil, mixed with a water-retaining agent, and spray water and fertilize regularly;

[0035]Step S2: When the height of the plant reaches 20 cm, the top of the plant is inserted into an S-shaped plant modeling mold and cultivated for 90 days;

[0036]Step S3: After the branches and trunks of the plants grow into S-shapes, the S-shape plant modeling molds are removed, and the cultivation is continued for 30 days;

[0037]Step S4: Spray growth hormone to the S-shaped branches of the plant at a fixed frequency, and the growth hormone includes the following raw material components: 2 parts by weight of naphthoacetic acid, 1 part by weight of gibberellin, and 1 part by weight of indole acetic acid , 5 parts by weight of jasmonic acid, the concentration of naphthalene acetic acid is between 100mg / L, the concentration of gibberellin is between 20ppm, th...

Embodiment 2

[0046]A plant modeling method includes the following steps:

[0047]Step S1: Plant multiple cypress, weeping willows and rose apples at the required density in the nutrient soil. The nutrient soil is mixed with a water-retaining agent, and spray water and fertilize regularly;

[0048] Step S2: When the height of the plant reaches 50 cm, the top of the plant is inserted into an S-shaped plant modeling mold and cultivated for 180 days;

[0049]Step S3: After the branches and trunks of the plants grow into S-shapes, remove the S-shape plant modeling molds and continue to cultivate for 90 days;

[0050]Step S4: Spray growth hormone to the S-shaped branches of the plant at a fixed frequency, the growth hormone comprising the following raw material components: 4 parts by weight of naphthoacetic acid, 3 parts by weight of gibberellin, and 2 parts by weight of indole acetic acid , 8 parts by weight of jasmonic acid, the concentration of naphthalene acetic acid is between 150mg / L, the concentration of g...

Embodiment 3

[0059]A plant modeling method includes the following steps:

[0060]Step S1: Plant multiple water-retaining agents in the nutrient soil at the required density according to the required density. Plant abacus, waterweed, large leaf abacus, twig leaf bead, bellows tree, water ball flower, Guangdong water brocade tree. Spray water and fertilize;

[0061]Step S2: When the height of the plant reaches 30 cm, the top of the plant is inserted into an S-shaped plant modeling mold and cultivated for 120 days;

[0062]Step S3: After the branches and trunks of the plants grow into S-shapes, the S-shape plant modeling molds are removed, and the cultivation is continued for 50 days;

[0063]Step S4: Spraying growth hormone to the S-shaped branches of the plant at a fixed frequency, the growth hormone comprising the following raw material components: 3 parts by weight of naphthoacetic acid, 2 parts by weight of gibberellin, and 1.5 parts by weight of indole acetic acid , 6 parts by weight of jasmonic acid, th...

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Abstract

The invention provides a plant modeling method. The method comprises the following steps: cultivating young seedlings; shaping; cultivating a shaped plant; treating growth hormone; fertilizing; and transplanting and the like. The method is capable of performing forestation in water through using characters of the plant, greatly improving a forest coverage rate and biodiversity, achieving the effect of reinforcing an embankment without damaging land, purifying a water body, forming a good water circulating system, and reducing manpower and material resources needed for purifying the water body.

Description

Technical field[0001]The invention belongs to the technical field of landscaping, and particularly relates to a plant modeling method.Background technique[0002]Green space plays an important role in the construction of an ecological city. Green space is an important part of the urban ecosystem and a regulator of urban ecological balance. It has multiple ecological functions such as improving urban air quality, regulating microclimate, and beautifying urban landscapes. At present, the wetland plant landscape in Guangzhou area is basically herbaceous, and the application of wetland woody plants is very few. There are only a few species such as Taxodium and water pine. The wetland landscape lacks landscape persistence, and the unreasonable maintenance promotes biological siltation Bringing secondary pollution of wetland water bodies; in order to enrich the diversity of wetland plants, and realize the stable and sustainable development of the wetland ecosystem while shaping a good plant...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A01G17/00A01G7/06A01C21/00C05G3/00
CPCA01C21/00A01G7/06A01G17/005C05B7/00C05G3/00C05C3/00C05C9/00C05D9/00C05D9/02Y02P60/40Y02A40/22
Inventor 陈平郭敏孔静怡梁世雄史红玉
Owner ZHONGKAI UNIV OF AGRI & ENG
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