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Preparation for inhibiting soil nitrogen loss as well as preparation method and application thereof

A soil and preparation technology, applied in the field of preparations for inhibiting soil nitrogen loss, can solve the problems of difficult application of physical and chemical properties, inconvenient use, high price, etc., and achieve the effects of being conducive to environmental protection, reducing leaching, and achieving good effects.

Inactive Publication Date: 2013-08-28
ZHEJIANG AOFUTUO CHEM
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, there are many defects in these urease inhibitory compounds or nitrification inhibitory compounds, or they are expensive, or inconvenient to use, or have poor effects or their physical and chemical properties are difficult to apply, and it is difficult to find an economical, efficient, and convenient application. Products for field crops

Method used

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  • Preparation for inhibiting soil nitrogen loss as well as preparation method and application thereof
  • Preparation for inhibiting soil nitrogen loss as well as preparation method and application thereof
  • Preparation for inhibiting soil nitrogen loss as well as preparation method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0047] The preparation method of a preparation for inhibiting soil nitrogen loss in this embodiment: the mass percentage is: 24% of 2-chloro-6-trichloromethylpyridine, 1% of hydroquinone, 15% of auxiliary agent, and 60% of solvent as raw materials , that is, 25kg castor oil polyoxyethylene ether, 25kg triphenylethylphenol polyoxyethylene ether, 25kg alkylphenol formaldehyde resin polyoxyethylene ether and 75kg calcium dodecylbenzenesulfonate, put into 1000L heating and cooling clamps in turn Add 600kg of xylene to the glass-lined reactor with a stirring device, stir and mix thoroughly, then add 10kg of hydroquinone and 240kg of 2-chloro-6-trichloromethylpyridine to the mixture, and heat to 50 At about ℃, at this temperature, stir and keep warm for 1 hour, and cool to room temperature to obtain a light yellow and transparent liquid preparation that can inhibit soil nitrogen loss. The process is simple and the operation is convenient. The preparation is used to suppress the loss...

Embodiment 2

[0049] The preparation method of a preparation for inhibiting soil nitrogen loss in this embodiment: the mass percentage is: 20% of 2-chloro-6-trichloromethylpyridine, 5% of hydroquinone, 15% of auxiliary agent, and 60% of solvent as raw materials , that is, 25kg castor oil polyoxyethylene ether, 25kg triphenylethylphenol polyoxyethylene ether, 25kg alkylphenol formaldehyde resin polyoxyethylene ether and 75kg calcium dodecylbenzenesulfonate, put into 1000L with heating and cooling clamps in turn In the glass-lined reactor with sleeve and stirring device, put 600kg C 9 Aromatic hydrocarbons, fully stirred and mixed, then added 50kg hydroquinone and 200kg 2-chloro-6-trichloromethylpyridine to the mixture, and heated to 50°C±2°C while stirring. Stir and incubate at this temperature for 1 hour. After cooling to normal temperature, a light yellow transparent liquid preparation capable of inhibiting soil nitrogen loss can be obtained. The process is simple and the operation is con...

Embodiment 3

[0051]The preparation method of a preparation for inhibiting soil nitrogen loss in this embodiment: the mass percentage is: 2-chloro-6-trichloromethylpyridine 25%, hydroquinone 2%, auxiliary agent 18%, and solvent 55% as raw materials , that is, 25kg castor oil polyoxyethylene ether, 25kg triphenylethylphenol polyoxyethylene ether, 25kg alkylphenol formaldehyde resin polyoxyethylene ether and 105kg calcium dodecylbenzenesulfonate, put into 1000L heating and cooling clamps in turn Put into a glass-lined reactor with a stirring device, and then put 300kg of mixed xylene, 100kg of ethylbenzene and 150kg of cumene into the mixed solution, fully stir and mix, and then add 20kg of hydroquinone and 250kg of 2-chloro- 6-trichloromethylpyridine, heated to 50℃±2℃ while stirring. Stir and incubate at this temperature for 1 hour. After cooling to normal temperature, a light yellow transparent liquid preparation capable of inhibiting soil nitrogen loss can be obtained. The process is simp...

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Abstract

The invention discloses a preparation for inhibiting soil nitrogen loss as well as a preparation method and an application thereof. The preparation is prepared from the following raw materials in percentage by mass: 1-40% of 2-chloro-6-trichloromethylpyridine, 0-5% of hydroquinone, 5-20% of accessory ingredient and 35-90% of solvent. The preparation disclosed by the invention can be evenly dispersed in an aqueous phase, and the preparation and a nitrogenous fertilizer are evenly applied into soil so as to effectively alleviate speed of urea to be hydrolyzed into ammonia under the urease action and also effectively inhibit the process of oxidizing NH<4+> into NO<3->; NO<2-> and NO<3-> leaching loss is reduced, and NOX and N2 can be further prevented from escaping because of denitrification; and the utilization rate of the nitrogen fertilizer is improved so as to improve the quality and the yield of the crops and lighten pollution to environment by the nitrogen fertilizer.

Description

technical field [0001] The invention relates to a preparation for inhibiting soil nitrogen loss, a preparation method and application thereof. Background technique [0002] Nitrogen in soil is divided into organic nitrogen and inorganic nitrogen. Organic nitrogen mainly comes from animals, fish products, green manure, crop residues, organic chemical fertilizers, etc. Except for organic nitrogen chemical fertilizers such as urea, these organic nitrogen fertilizers have very low solubility in water and cannot be directly absorbed and utilized by plants. Nitrogen in organic nitrogen-containing compounds is only useful to plants when they are converted by soil microorganisms into inorganic nitrogen-containing compounds. After this organic nitrogen-containing compound is decomposed by microorganisms, ammonia or ammonium salts are first generated. For example: urea first generates ammonia under the action of soil urease, [0003] Due to this rapid change in the soil, NH 3 A...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C05G3/08A01B77/00C05G3/90
CPCY02P60/21
Inventor 戴锋
Owner ZHEJIANG AOFUTUO CHEM
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