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Flowering plant nutrient soil and preparation method thereof

A technology for flower nutrient soil and Faku clay, which is applied to the field of flower nutrient soil and its preparation, can solve problems such as the influence of water absorption, and achieve the effects of improving fertilizer absorption, increasing porosity and nutrient elements, and being difficult to harden.

Inactive Publication Date: 2018-11-13
来安县出尘茶业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Existing Chinese patent literature (publication number: CN105237081A) discloses a kind of flower nutrient soil, and its parts by weight are composed of: 3-8 parts of mulch soil, 3-6 parts of silt soil, 2-6 parts of chaff powder, fire-burned soil 2-4 parts, 1-2 parts of mountain mud, 0.1-0.6 parts of plant nutrients, wherein the humus soil is made of the following components in weight percentage: 33% of mushroom dregs, 33% of straw, 33% of manure, and 0.3% of urea , 0.6% calcium fertilizer, 0.1% potassium fertilizer; wherein the plant nutrient is made of the following components by weight percentage: minced garlic 8%, Artemisia annua slag 60%, sorghum flour 12%, corn silk 4%, water chestnut husk powder 4% , malt 4%, watermelon rind 4%, celery leaf 4%, although this nutrient soil can provide the nutrient elements needed for flower growth, but the nutrient soil porosity, water absorption and other properties also have a certain impact on flowers, and then further research on nutrition is needed. Soil Composition and Proportion

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] A kind of flower nutrient soil of the present embodiment, comprises the raw material of following weight portion:

[0035] 34 parts of base material, 26 parts of coal gangue, 20 parts of porous limestone, 18 parts of peat, 14 parts of rice husk ash, 12 parts of muddy sediment, 8 parts of pretreated sodium zeolite, 3 parts of high-absorbent resin, Yunnan Tengchong volcanic mud 3 parts, Faku clay 2 parts, bamboo fiber 2 parts, deionized water 12 parts.

[0036] The base material of the present embodiment comprises following raw materials in parts by weight:

[0037] 32 parts of humus, 22 parts of fresh brewer's grains, 14 parts of urea, 12 parts of vermicompost, 6 parts of plant residues, 4 parts of lake mud, and 3 parts of superphosphate.

[0038] The plant residues in this embodiment are fermented by stacking the plant residues for 45-55 days.

[0039] The muddy sediment in this example is a mixture of taupe clayey silt and biological debris in a weight ratio of 7:3. ...

Embodiment 2

[0047] A kind of flower nutrient soil of the present embodiment, comprises the raw material of following weight portion:

[0048] 38 parts of base material, 32 parts of coal gangue, 26 parts of porous limestone, 22 parts of peat, 18 parts of rice husk ash, 16 parts of muddy sediment, 12 parts of pretreated sodium zeolite, 7 parts of high-absorbent resin, and 5 parts of Yunnan Tengchong volcanic mud 4 parts, 4 parts of Faku clay, 4 parts of bamboo fiber, 18 parts of deionized water.

[0049] The base material of the present embodiment comprises following raw materials in parts by weight:

[0050] 35 parts of humus, 24 parts of fresh brewer's grains, 17 parts of urea, 14 parts of vermicompost, 8 parts of plant residues, 6 parts of lake mud, and 4 parts of superphosphate.

[0051] The plant residues in this embodiment are formed by stacking and fermenting the plant residues for 55 days.

[0052] The muddy sediment in this example is a mixture of taupe clayey silt and biological d...

Embodiment 3

[0060] A kind of flower nutrient soil of the present embodiment, comprises the raw material of following weight portion:

[0061] 36 parts of base material, 29 parts of coal gangue, 23 parts of porous limestone, 20 parts of peat, 16 parts of rice husk ash, 14 parts of muddy sediment, 10 parts of pretreated sodium zeolite, 5 parts of high-absorbent resin, and 4 parts of Yunnan Tengchong volcanic mud 3 parts, Faku clay 3 parts, bamboo fiber 3 parts, deionized water 15 parts.

[0062] The base material of the present embodiment comprises following raw materials in parts by weight:

[0063] 35 parts of humus, 24 parts of fresh brewer's grains, 17 parts of urea, 14 parts of vermicompost, 8 parts of plant residues, 6 parts of lake mud, and 4 parts of superphosphate.

[0064] The plant residues in this embodiment are formed by stacking and fermenting the plant residues for 50 days.

[0065] The muddy sediment in this example is a mixture of taupe clayey silt and biological debris i...

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Abstract

The invention discloses flowering plant nutrient soil, and aims to provide the flowering plant nutrient soil and a preparation method thereof. The flowering plant nutrient soil is prepared from, by weight, 34-38 parts of a base material, 26-32 parts of coal gangue, 20-26 parts of porous limestone, 18-22 parts of peat, 14-18 parts of rice hull ash,12-16 parts of argillaceous sediment, 8-12 parts ofpretreated natrolite, 3-7 parts of super absorbent resin, 3-5 parts of Yunnan Tengchong volcanic mud, 2-4 parts of Faku clay, 2-4 parts of bamboo fiber and 12-18 deionized water. The flowering plantnutrient soil and the preparation method thereof have the advantages that the nutrient soil has high hygroscopic property and porosity, and the germination rate and plant height of flowering plants are improved, so that the use value is higher, and the application prospect is good.

Description

technical field [0001] The invention relates to the technical field of nutrient soil, in particular to a flower nutrient soil and a preparation method thereof. Background technique [0002] Flowers, herbaceous plants with ornamental value, is a general term for plants used for appreciation, sun-loving and cold-resistant, with short branches with reproductive function, there are many types; typical flowers, on a short axis of limited growth, calyx , petals and stamens and pistils that produce reproductive cells. Flowers are composed of corolla, calyx, receptacle, and stamens. The space in the pot is limited, the nutrients that can be stored are few, and it can supply the growth of flowers in a short period of time. However, if the flowers are cultivated for a long time, the leaves will turn yellow and the flowering period will be shortened due to insufficient nutrients. Therefore, after a period of cultivation, it is often necessary to feed Flowers change soil or fertilize t...

Claims

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Application Information

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IPC IPC(8): A01G24/28A01G24/10A01G24/12A01G24/22A01G24/35A01G24/15
CPCA01G24/28A01G24/10A01G24/12A01G24/15A01G24/22A01G24/35
Inventor 王道仁
Owner 来安县出尘茶业有限公司
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