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Liquid compound trace element fertilizer and preparation method thereof

A compound trace element and liquid technology, applied in fertilizer mixtures, fertilization devices, applications, etc., can solve the problems that trace elements cannot be used normally, and cannot be absorbed quickly and effectively by plants, so as to achieve a scientific and reasonable proportion of trace elements and improve Crop uptake efficiency, effect on a wide range of crops and application periods

Active Publication Date: 2015-09-09
中化农业(新疆)生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Trace element fertilizers sold in the market are composed of single or several trace elements required by plants in the form of inorganic salts. They are generally solid powders. The disadvantage is that they cannot be completely, quickly and effectively absorbed by plants. They exist in the form of metal ions and are easily absorbed by plants. The soil is fixed, so that the trace elements cannot be played normally

Method used

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  • Liquid compound trace element fertilizer and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] (1) Add 410kg of pure water into the reaction kettle, turn on the steam heating reaction kettle and heat and stir until the temperature in the kettle reaches 95°C;

[0019] (2) Add 100kg mannitol, 50kg xylitol, and 50kg sorbitol into the reactor, and keep the temperature at 95°C and stir evenly;

[0020] (3) Add 2kg ammonium molybdate, 10kg sodium octaborate tetrahydrate, 14kg zinc sulfate monohydrate, 7kg manganese sulfate monohydrate, 10kg copper sulfate pentahydrate, and 460kg ferrous sulfate heptahydrate to the reactor to keep the temperature in the kettle Chelation reaction at 95°C for 4h;

[0021] (4) The above-mentioned chelating liquid is cooled to room temperature, and 20 kg of citric acid, 10 kg of hydroxylamine hydrochloride, and 5 kg of ascorbic acid are added successively and stirred until the solution in the kettle is clarified to obtain a finished product.

[0022] Among the liquid composite trace elements prepared above, iron is 90g / L, manganese is 7g / L...

Embodiment 2

[0025] (1) Add 440kg of pure water into the reaction kettle, turn on the steam heating reaction kettle and heat and stir until the temperature in the kettle reaches 95°C;

[0026] (2) Add 100kg of mannitol, 100kg of xylitol, and 50kg of sorbitol into the reactor, and keep the temperature at 95°C and stir evenly;

[0027] (3) Add 4kg ammonium molybdate, 8kg sodium octaborate tetrahydrate, 100kg zinc sulfate monohydrate, 96kg manganese sulfate monohydrate, 6kg copper sulfate pentahydrate, and 200kg ferrous sulfate heptahydrate to the reactor to keep the temperature in the kettle Chelation reaction at 95°C for 4h;

[0028] (4) The above-mentioned chelating liquid is cooled to room temperature, and 30 kg of citric acid, 10 kg of hydroxylamine hydrochloride, and 5 kg of ascorbic acid are added successively and stirred until the solution in the kettle is clarified to obtain a finished product.

[0029] Among the liquid composite trace elements prepared above, iron is 39g / L, mangane...

Embodiment 3

[0032] (1) Add 420kg of pure water into the reaction kettle, turn on the steam heating reaction kettle and heat and stir until the temperature in the kettle reaches 95°C;

[0033] (2) Add 100kg of mannitol, 100kg of xylose, and 50kg of sorbitol into the reactor, and keep the temperature at 95°C and stir evenly;

[0034] (3) Add 2kg ammonium molybdate, 15kg sodium octaborate tetrahydrate, 57kg zinc sulfate monohydrate, 64kg manganese sulfate monohydrate, 2kg copper sulfate pentahydrate, and 307kg ferrous sulfate heptahydrate in the reactor to keep the temperature in the kettle Chelation reaction at 95°C for 4h;

[0035] (4) The above-mentioned chelating liquid is cooled to room temperature, and 50 kg of citric acid and 5 kg of ascorbic acid are added successively and stirred until the solution in the kettle is clarified, and the finished product is obtained.

[0036] Among the liquid composite trace elements prepared above, iron 60g / L, manganese 20g / L, zinc 20g / L, boron 3g / L, ...

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Abstract

The invention discloses a liquid compound trace element fertilizer and a preparation method thereof. The fertilizer comprises the following ingredients by weight percent: 0-1.0% of citric acid, 0-1.0% of ascorbic acid (vitamin C), 0-1.0% of hydroxylamine hydrochloride, 0-1.0% of sorbitol, 0-1.0% of xylitol, 0-1.0% of mannitol, 0.46-38% of ferrous sulfate heptahydrate, 0.13-24% of manganese sulfate monohydrate, 0.18-3.3% of copper sulfate pentahydrate, 0.25-2.3% of zinc sulphate monohydrate, 0.25-4% of disodium octaborate tetrahydrate, 0.08-1.5% of ammonium molybdate, and the balance of pure water, wherein the dosage of the citric acid, the dosage of the ascorbic acid and the dosage of the hydroxylamine hydrochloride cannot be 0 at the same time, and the dosage of sorbitol, the dosage of xylitol and the dosage of mannitol cannot be 0 at the same time. According to the invention, an antioxidant prepared from one, two or more of the citric acid, ascorbic acid and hydroxylamine hydrochloride can effectively inhibit ferrous ions from being hydrolyzed into ferric ions, so that the iron ion absorption efficiency is improved, and the color of the product does not change at a high temperature; the raw material resources are rich, the production cost is low, and the equipment and production technologies are simple.

Description

technical field [0001] The invention belongs to the field of water-soluble fertilizer production, and relates to a trace element liquid water-soluble fertilizer, in particular to a liquid compound trace element fertilizer and a preparation method thereof. Background technique [0002] There is a wide area of ​​soil lacking trace elements in our country, and the effective content of trace elements in many soils is lower than the critical value necessary for plants, which seriously affects the normal growth of plants. Trace element fertilizers sold in the market are composed of single or several trace elements required by plants in the form of inorganic salts. They are generally solid powders. The disadvantage is that they cannot be completely, quickly and effectively absorbed by plants. They exist in the form of metal ions and are easily absorbed by plants. The soil is fixed, so that the trace elements cannot be played normally. With the deepening of micro-fertilizer researc...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C05G3/00
Inventor 王岩张弘梁志杰王绪涛孙忠鹏
Owner 中化农业(新疆)生物科技有限公司
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