Sandy soil saline-alkali soil structure conditioning method with moire stone soil deep loosening agent

A technology for soil deep loosening and soil structure, which is applied in the field of sandy soil saline-alkali soil structure conditioning and saline-alkali soil structure conditioning. It can solve the problems of reducing soil salinity and alkalinity in saline-alkali soil, poor mechanical stability of aggregate structure, and poor water retention of saline-alkali soil. , to achieve the effect of increasing water holding capacity, improving soil water holding capacity and improving mechanical stability

Inactive Publication Date: 2015-11-11
WEIFANG YOURONG IND
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] (2) While reducing the salinity and alkalinity of saline-alkali soil, it causes the loss of nutrients in the soil;
[0007] (3) The water retention capacity of the saline-alkali soil is poor, and the mechanical stability of the aggregate structure in the soil is poor

Method used

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  • Sandy soil saline-alkali soil structure conditioning method with moire stone soil deep loosening agent

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0031] Embodiment 1 A kind of chamorite soil subsoiling agent

[0032] Described soil deep loosening agent, the mass ratio of each component is:

[0033] 35 parts of chapierite, 20 parts of limestone, 15 parts of vinyl acetate and maleic acid copolymer, 4 parts of jelly-like bacillus, 7 parts of citric acid, 2 parts of asparagus residue, 12 parts of sawdust, acrylic acid / acrylamide copolymer 0.5 parts of water retaining agent, 4 parts of carbonized chaff, 3 parts of marshmallow powder, and 2 parts of potassium dihydrogen phosphate.

[0034] The sawdust has a water content of 7-10%, and the particles are less than 50 mesh;

[0035] The limestone has a calcium content greater than 50%;

[0036] The hollyhock powder has a particle size of less than 100 mesh.

Embodiment 2

[0037] Embodiment 2 A kind of chrysotile soil subsoiling agent

[0038] Described soil deep loosening agent, the mass ratio of each component is:

[0039] 40 parts of chapierite, 25 parts of limestone, 18 parts of vinyl acetate and maleic acid copolymer, 7 parts of jelly-like bacillus, 12 parts of citric acid, 3 parts of asparagus residue, 15 parts of sawdust, acrylic acid / acrylamide copolymer 0.7 parts of water retaining agent, 7 parts of carbonized chaff, 5 parts of marshmallow powder, and 5 parts of potassium dihydrogen phosphate.

[0040] The sawdust has a water content of 7-10%, and the particles are less than 50 mesh;

[0041] The limestone has a calcium content greater than 50%;

[0042] The hollyhock powder has a particle size of less than 100 mesh.

Embodiment 3

[0043] Embodiment 3 A kind of chamorite soil subsoiling agent

[0044] Described soil deep loosening agent, the mass ratio of each component is:

[0045] 45 parts of chapirite, 30 parts of limestone, 22 parts of vinyl acetate and maleic acid copolymer, 10 parts of jelly-like Bacillus, 14 parts of citric acid, 5 parts of asparagus residue, 18 parts of sawdust, acrylic acid / acrylamide copolymer 0.8 parts of water retaining agent, 9 parts of carbonized chaff, 8 parts of marshmallow powder, and 7 parts of potassium dihydrogen phosphate.

[0046] The sawdust has a water content of 7-10%, and the particles are less than 50 mesh;

[0047] The limestone has a calcium content greater than 50%;

[0048] The hollyhock powder has a particle size of less than 100 mesh.

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Abstract

The invention provides a sandy soil saline-alkali soil structure conditioning method with a moire stone soil deep loosening agent. The method comprises the steps of soil deep loosening agent application and fertilizer application. The soil deep loosening agent comprises the components of, by mass, 35-45 parts of moire stone, 20-30 parts of limestone, 15-22 parts of a copolymer of vinyl acetate and maleic acid, 4-10 parts of bacillus mucilaginosus, 7-14 parts of citric acid, 2-5 parts of asparagus residue, 12-18 parts of sawdust, 0.5-0.8 parts of an acrylic acid / acrylamide copolymerized water retention agent, 4-9 parts of carbonized rice husk, 3-8 parts of hollyhock powder, and 2-7 parts of potassium dihydrogen phosphate. The method has the following advantages: after 6 months of sandy soil saline-alkali soil structure conditioning, soil pH value is 7.0-7.3, soil alkalinity is 3.4-5.2%, soil salinity is 0.31-0.38%, and soil water retention capacity and fertility are improved.

Description

technical field [0001] The invention relates to a method for regulating the soil structure of saline-alkali land, in particular to a method for regulating the soil structure of sandy soil saline-alkali land by using a chamoisite soil subsoiling agent, and belongs to the technical field of soil improvement. Background technique [0002] Sandy soil and saline-alkali soil have poor structure, poor water and fertilizer retention capacity, and less aggregate structure in the soil, which is not conducive to plant growth. [0003] Aiming at the problem of soil salinization, domestic and foreign scholars have carried out many researches, including under-mulch drip irrigation technology, concealed pipe drainage technology, alien soil technology and soil conditioner technology, etc. Although these technologies play a positive role in regulating salinized soil structure or improving crop yield and quality, some technologies have some limitations in their application. For example, under...

Claims

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Application Information

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IPC IPC(8): C09K17/40C09K17/06B09C1/08C09K109/00C09K101/00
Inventor 王胜
Owner WEIFANG YOURONG IND
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