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Compound aminoacid seed afterbirth substrate for treating sandy wasteland

A compound amino acid and aftercoat technology, which is applied in seed immunization and other fields, can solve the problems of difficult governance, vegetation destruction, and high cost

Inactive Publication Date: 2008-12-17
李海涛
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Sand desert control is a technical problem all over the world. At present, most of the sand desert control methods are afforestation or diversion of water into the sand. However, due to the difficulty and high cost of control, the results are not satisfactory. The deforestation caused serious damage to the ecological environment. Due to various reasons, the annual afforestation has a very low survival rate, is laborious and expensive, and also destroys the vegetation, especially the management is not in place, and the water is insufficient. Few plants have survived due to serious shortage or other reasons, which has led to the increasing desertification of large areas of land. It is imperative to effectively control sand deserts and improve sand control technologies. Then, how to change sand deserts and barren mountains will give human society a new opportunity. What about a good living environment? This is an urgent requirement of human society

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0006] Embodiment 1: the present invention is by weight: 600 parts of compound amino acids, 350 parts of plant stalks, 150 parts of charcoal powder, 80 parts of urea-formaldehyde resin, 120 parts of potassium feldspar, 160 parts of phosphate rock, 100 parts of propylene oxide, 50 parts of copper sulfate, 40 parts of magnesium sulfate, 30 parts of zinc sulfate, 30 parts of manganese sulfate, 160 parts of borax, 50 parts of sodium hydroxide and 100 parts of glucose, among which, the compound amino acid and plant straw are crushed and mixed with charcoal powder Pour into the mixer, stir and mix evenly at 28°C, add propylene oxide and stir for 2.5 hours, the reaction is complete, when gas is released, then add potassium feldspar in turn, phosphate rock is fully stirred for 4.5 hours, and then Add copper sulfate, magnesium sulfate, zinc sulfate, manganese sulfate, borax and glucose in turn and stir for 3 hours, then add sodium hydroxide to adjust the pH value to 5.8, and finally add...

Embodiment 2

[0007] Embodiment 2: the present invention is by compound amino acid 600kg, plant straw 350kg, charcoal powder 150kg, urea-formaldehyde resin 80kg, potassium feldspar 120kg, phosphate ore 160kg, propylene oxide 100kg, copper sulfate 50kg, magnesium sulfate 40kg, zinc sulfate 30kg, 30kg of manganese sulfate, 160kg of borax, 50kg of sodium hydroxide and 100kg of glucose, among which, the compound amino acid, plant straws are first crushed and put into the mixer with charcoal powder, at 25°C, stir and mix evenly, add epoxy Propane stirred and reacted for 3 hours, the reaction was complete, and when gas was released, then add potassium feldspar in turn, phosphate rock was fully stirred and reacted for 5.5 hours, then added copper sulfate, magnesium sulfate, zinc sulfate, manganese sulfate, borax and glucose in order to fully stir React for 5 hours, then add sodium hydroxide to adjust the pH value to 6.1, and finally add urea-formaldehyde resin and stir for 3 hours.

Embodiment 3

[0008] Embodiment 3: the present invention is by weight percent: compound amino acid 30%, plant stalk 17%, charcoal powder 7%, urea-formaldehyde resin 4%, potassium feldspar 6%, phosphate rock 8%, propylene oxide 5% , 2.5% copper sulfate, 2% magnesium sulfate, 1.5% zinc sulfate, 1.5% manganese sulfate, 8% borax, 2.5% sodium hydroxide and 5% glucose. Pour the powder into the mixer, stir and mix evenly at a temperature of 19°C, add propylene oxide and stir for 4 hours, the reaction is complete, when gas is released, then add potassium feldspar in turn, and the phosphate rock is fully stirred for 6 hours, Then add copper sulfate, magnesium sulfate, zinc sulfate, manganese sulfate, borax and glucose and stir to react for 7.5 hours, then add sodium hydroxide to adjust the pH value to 6.4, and finally add urea-formaldehyde resin and stir for 4 hours.

[0009] After testing, 10 mu of barren sand was transformed, and 50-80kg / mu of substrate was applied every year, and watered 3 times,...

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PUM

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Abstract

The invention relates to a compound amino acid seed secundina stroma for controlling sandy wastelands, which efficiently solves the problem of controlling sandy wastelands. The stroma is accounted based on weight percentages as follows: 16-48% of compound amino acid, 8-28% of plant straw, 4-21% of powdered charcoal, 2-11% of urea resin, 3-15% of potassium feldspar, 4-18% of phosphorus ore, 2-11% of propylene oxide, 1-4% of bluestone, 1-4% of magnesium sulfate, 0.7-3% of zinc sulfate, 0.4-2% of manganous sulfate, 4-15% of borax, 1-6% of sodium hydroxide and 2-11% of glucose. The compound amino acid and the plant straw are firstly crashed and then poured in a stirrer together with the powdered charcoal for even mixing; the propylene oxide is added for stirring; when gas is discharged, after the potassium feldspar and the phosphorus ore are added and stirred, the bluestone, magnesium sulfate, zinc sulfate, manganous sulfate, borax and glucose are then added and stirred; the sodium hydroxide is added for even mixing till the pH value is 5.5-6.5; finally, the urea resin is added for stirring and even mixing. The compound amino acid seed secundina stroma can satisfy plant-required nutrient contents, thus having water conservation, water storage, as well as great economic and social benefits in the popularization.

Description

1. Technical field [0001] The invention relates to a compound amino acid seed coating matrix for controlling desertification. 2. Background technology [0002] Sand desert control is a technical problem all over the world. At present, most of the sand desert control methods are afforestation or diversion of water into the sand. However, due to the difficulty and high cost of control, the results are not satisfactory. The deforestation caused serious damage to the ecological environment. Due to various reasons, the annual afforestation has a very low survival rate, is laborious and expensive, and also destroys the vegetation, especially the management is not in place, and the water is insufficient. Few plants have survived due to serious shortage or serious shortage of other reasons, which has led to the increasing desertification of large areas of land. It is imperative to effectively control sand deserts and improve sand control technologies. Then, how to change sand desert...

Claims

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Application Information

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IPC IPC(8): A01C1/08
Inventor 李海涛马梅静
Owner 李海涛
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