Method for planting fruit of thorny elaeagnus in saline-alkali land

A technology of saline-alkali land and planting, applied in the direction of soil preparation, fertilizer made from biological waste, application, etc., can solve the problems of slow growth, lower soil pH value, easy loss, etc., to increase soil organic matter, easy to obtain materials, and easy to operate Effect

Pending Publication Date: 2019-01-22
INST OF BOTANY JIANGSU PROVINCE & CHINESE ACADEMY OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The method of carrying out original soil greening in coastal tidal flat saline-alkali land generally includes the following steps: first try salt absorbing agent to improve coastal tidal flat saline-alkali land, and then plant original soil greening plants on the improved tidal flat saline-alkali land. In the original soil greening process, there are the following Disadvantages: It cannot effectively reduce the salt content in the tidal flat saline-alkali soil; the soil's fertilizer retention capacity is poor, and it is easy to lose after fertilizer application; the soil's water retention capacity is poor, and the water is easy to lose, and the moisture content in the soil is low; Effectively reduce the pH value of the soil; the survival rate of native plants is low and the growth is slow
[0005] The applicant tried to directly transplant the obtained cutting seedlings of Ebi sativa to the tidal flats with high saline-alkali content, but the survival rate was very low, and the purpose of landscaping and improving soil fertility on coastal tidal flats could not be realized. Tissue culture propagation method obtains the method for the seedlings of S. esculenta. However, the prior art has not yet reported that S. esculenta is used for coastal tidal greening and soil improvement.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] A kind of method for planting Abby succulents in saline-alkali land, it is characterized in that comprising the steps:

[0035] (1) Preparation of bio-organic fertilizer

[0036] The bio-organic fertilizer is composed of the following components in parts by weight: 28 parts of straw fermentation products, 20 parts of livestock manure, 7 parts of peat, 7 parts of rice bran, and 5 parts of potassium humate.

[0037] The straw fermentation product is a fermentation product of straw by using a compound bacterial agent, and the straw is corn straw.

[0038]The composite bacterial agent is mixed according to a volume ratio of 7:4:3:3 by Bacillus pumilus, Enterococcus faecalis, fermenting cellulophage, and Bacillus megaterium phosphate solubilizing;

[0039] The described Bacillus pumilus, Enterococcus faecalis, fermenting cellulophage, and Bacillus megaterium phospholyticum can be purchased commercially;

[0040] The preparation method of the composite bacterial agent is as...

Embodiment 2

[0047] A kind of method for planting Abby succulents in saline-alkali land, it is characterized in that comprising the steps:

[0048] (1) Preparation of bio-organic fertilizer

[0049] The bio-organic fertilizer is composed of the following components in parts by weight: 35 parts of straw fermentation products, 25 parts of livestock manure, 10 parts of peat, 10 parts of rice bran, and 8 parts of potassium humate.

[0050] The straw fermentation product is a fermentation product of straw by using a compound bacterial agent, and the straw is rice straw.

[0051] The composite bacterial agent is mixed according to a volume ratio of 7:4:3:3 by Bacillus pumilus, Enterococcus faecalis, fermenting cellulophage, and Bacillus megaterium phosphate solubilizing;

[0052] The Bacillus pumilus is (Bacillus pumilus) ATCC7061;

[0053] Described enterococcus faecalis is (Enterococcus faecalis) ATCC29212;

[0054] The fermenting cellulophage is (Cytophaga fermentans) ATCC 19072;

[0055]...

Embodiment 3

[0062] Example 3 Seedling rate and growth statistics.

[0063] Statistical to the growth situation of Ebi's succulents by the end of August, 2018, a control group is set at the same time of embodiment 1-2,

[0064] Control 1 group, bio-organic fertilizer is replaced by common chemical fertilizer, all the other are with embodiment 1;

[0065] Control group 2: the composite microbial agent for fermenting straw was prepared from Bacillus amyloliquefaciens, Trichoderma chrysogenum, Candida, fermenting cellulophages, and Bacillus megaterium at a ratio of 5:3:4:2:1, and the rest were the same as in the example 1;

[0066] Control group 3: in step (3), directly use the soil in the plot to plant seedlings, and the rest are the same as in Example 1;

[0067] See Table 1 for statistics.

[0068] Table 1 Growth Statistics

[0069] group

[0070] It can be seen that the scheme of the present application realizes the planting of Ebi sativa in saline-alkali coastal beaches, an...

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Abstract

The invention relates to a method for planting fruit of thorny elaeagnus in saline-alkali land. The method includes the following steps: preparing a bio-organic fertilizer, wherein the bio-organic fertilizer consists of straw fermentation products, livestock manure, peat, rice bran and potassium humate; selecting and preparing the land; selecting and planting seedlings; and preforming fertilizer and water management and cultivation management. The method has simple operation, can plant the fruit of thorny elaeagnus in moderate saline-alkali soil without later curing, has fast growth speed, short seedling slowing period and high survival rate of the seedlings, and can fully and effectively utilize the existing large-area coastal mudflat in China, so that economic benefits are improved and the application prospect is good.

Description

technical field [0001] The invention belongs to the technical field of agricultural planting, and in particular relates to a method for planting Ebi sativa in saline-alkali land. Background technique [0002] Soil salinization is a worldwide problem. According to statistics, the area of ​​coastal tidal flats in my country is about 6 million hm 3 , while the total area of ​​coastal tidal flats in Jiangsu is about 100 hm 3 , accounting for 1 / 6 of the tidal flat area in China. The physical and chemical properties of saline-alkali soil are poor, the soil is barren, the organic matter and nutrient content are generally low, the ability to retain fertilizer and water is poor, and the salt content is high. These are the common characteristics of difficult sites in coastal tidal flat areas. These environmental conditions will directly damage the cells, tissues and organs of cultivated plants, resulting in shortened plant life cycle and even death. Therefore, the difficult site co...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01G17/00A01B79/02C05G3/00C05G3/04C05G3/80
CPCA01B79/02A01G17/005C05D9/00C05F3/00C05G3/00C05G3/80C05F5/002C05F11/00C05F11/02C05F11/08Y02P20/133
Inventor 李乃伟束晓春王忠张明霞
Owner INST OF BOTANY JIANGSU PROVINCE & CHINESE ACADEMY OF SCI
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