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Preparation method of cold-resistant rooting agent for apple trees

A rooting agent and apple tree technology, applied in botany equipment and methods, biocides, plant growth regulators, etc., can solve problems such as soil and microbial environment imbalance, rooting cold resistance effect is not obvious, capillary root death root nodule, etc. , to achieve the effect of improving plant quality, increasing the survival rate of cuttings, and increasing the reproduction rate

Inactive Publication Date: 2019-07-05
宋思宜
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It can solve the problem that the effect of rooting and cold resistance is not obvious in the prior art
It can also solve the problem of acidification and compaction of the soil caused by the use of general chemical formulations of rooting and absorption promoters, which lead to imbalances in the soil and microbial environments
It can also solve the problems of excessive heavy metals in general chemical formulations, insufficient fermentation, and root burnt
It can also solve the problems of capillary root death, root nodule and other problems that cannot be solved by general chemical rooting and absorption enhancers.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] Step 1: Weigh according to the ratio of parts by mass: 100 parts of water, 0.0004 parts of potassium citrate, 0.00012 parts of fulvic acid, 0.00015 parts of seaweed micropowder, 0.0002 parts of indole acetic acid, 0.0003 parts of brassinolide, 0.0003 parts of gibberellic acid 0.135 parts, 0.0004 parts of vitamin C, 0.0002 parts of carbendazim wettable powder, 4 parts of ginger, 0.0002 parts of salicylic acid, 0.00015 parts of S-induced antibiotics, 0.0006 parts of ammonium sulfate, 0.00010 parts of guar gum powder, Insect agent tea saponin 0.00015 parts, sodium nitrophenolate 0.0001 parts, black garlic 1 part, reed 6 parts, fish latex 0.00018 parts.

[0018] Step 2: Wash the ginger, reed and black garlic, slice them and dry them, then pass through a 70-mesh sieve through a pulverizer, and mix with seaweed micropowder, brassinolide, ammonium sulfate, guar gum powder and red garlic Sterilize and dry moldic acid, put it into a reaction kettle equipped with a thermometer, a...

Embodiment 2

[0024] Step 1: Weigh according to the ratio of parts by mass: 100 parts of water, 0.0006 parts of potassium citrate, 0.00016 parts of fulvic acid, 0.00025 parts of seaweed micropowder, 0.0006 parts of indole acetic acid, 0.0007 parts of brassinolide, 0.0007 parts of gibberellic acid 0.137 parts, 0.0008 parts of vitamin C, 0.0006 parts of carbendazim wettable powder, 6 parts of ginger, 0.0006 parts of salicylic acid, 0.00019 parts of S-induced antibiotics, 0.0008 parts of ammonium sulfate, 0.00012 parts of guar gum powder, Insect agent tea saponin 0.00025 parts, sodium nitrophenolate 0.0003 parts, black garlic 5 parts, reed 10 parts, fish latex 0.00020 parts.

[0025] Step 2: Wash the ginger, reed and black garlic, slice them and dry them, then pass through a 90-mesh sieve through a pulverizer, and mix them with seaweed micropowder, brassinolide, ammonium sulfate, guar gum powder and red garlic Sterilize and dry moldic acid, put it into a reaction kettle equipped with a thermom...

Embodiment 3

[0031] Step 1: Weigh according to the ratio of parts by mass: 100 parts of water, 0.0005 parts of potassium citrate, 0.00014 parts of fulvic acid, 0.0002 parts of seaweed micropowder, 0.0004 parts of indole acetic acid, 0.0005 parts of brassinolide, 0.0005 parts of gibberellic acid 0.136 parts, 0.0006 parts of vitamin C, 0.0004 parts of carbendazim wettable powder, 5 parts of ginger, 0.0004 parts of salicylic acid, 0.00017 parts of S-induced antibiotics, 0.0007 parts of ammonium sulfate, 0.00011 parts of guar gum powder, Insect agent tea saponin 0.0002 parts, sodium nitrophenolate 0.0002 parts, black garlic 3 parts, reed 8 parts, fish latex 0.00019 parts.

[0032] Step 2: Wash the ginger, reed and black garlic, slice them and dry them, then pass through a 80-mesh sieve through a pulverizer, and mix them with seaweed micropowder, brassinolide, ammonium sulfate, guar gum powder and red garlic Sterilize and dry moldic acid, put it into a reaction kettle with a thermometer, a heat...

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PUM

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Abstract

The invention relates to a preparation method of a cold-resistant rooting agent for apple trees. The rooting agent comprises the following raw materials including water, potassium citrate, fulvic acid, seaweed micro-powder, indoleacetic acid, brassinolide, gibberellic acid, vitamin C, wettable carbendazim powder, fresh ginger, salicylic acid, S-abscisic acid, ammonium sulfate, guar gum powder, pesticide tea saponin, compound sodium nitrophenolate, black garlic, reed and fish latex. Through application of the rooting agent, the disease resistance rate is 91-99%, the incidence rates of bacterialleaf rot, leaf spot and ear root rot are reduced, the incidence rates of black spot and brown spot are 0, and the incidence rates of root rot, root nodule disease and rust disease are 0%. After the rooting agent is applied to apple trees, the growth vigor is good, a large number of roots grow out underground, the tree vigor is strong, leaves are dark green, and young fruits are large; the root system is robust, the rotting rate is 0.1-0.9%, the healing rate is increased by 60-80%, and the survival rate is 99-99.8%. The rooting agent is applicable to apple trees and has the advantages that theoverall tree vigor is strong, the growth tendency of leaves is great, there is no fruit rust, the surface gloss is great, and bitter pit does not occur.

Description

technical field [0001] The invention relates to the field of agents for fruit tree roots, in particular to a preparation method of an apple tree anti-cold rooting agent. Background technique [0002] In Apple: It is a deciduous tree, usually the trees can be up to 15 meters high, but the cultivated trees are generally only about 3-5 meters high. The trunk is gray-brown, and the bark has shed to some extent. The flowering period of apple trees depends on the climate of each place, but it is generally concentrated in April-May. Apples are cross-pollinated plants, and most varieties cannot bear fruit by themselves. [0003] Generally, after apples are planted, they start to bear fruit in 2-3 years. The fruit is generally red, but it depends on the variety. The fruit of the apple tree is rich in minerals and vitamins and is one of the most commonly consumed fruits. The length of the fruit growth period is generally 65-87 days for early-maturing varieties, 90-133 days for mi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01N65/48A01N63/02A01N37/40A01N37/36A01N43/38A01N43/22A01N43/12A01N45/00A01N47/18A01N37/42A01N43/16A01N33/22A01N59/02A01P21/00
CPCA01N65/00A01N65/03A01N65/44A01N65/48A01N65/42A01N37/40A01N37/36A01N43/38A01N43/22A01N43/12A01N45/00A01N47/18A01N37/42A01N43/16A01N33/22A01N59/02A01N63/10Y02A50/30
Inventor 宋思易
Owner 宋思宜