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Red-mud-based nitrogen phosphorus controlled release agent and preparation method thereof

A slow-release and controlled-release technology, which is used in fertilizer mixtures, fertilization devices, applications, etc., can solve the problems of limited long-term and continuous control ability, low product dosage, and physical and chemical properties restrictions, and achieve good economy. , The effect of rich raw material source and reasonable ratio

Active Publication Date: 2014-09-10
HUNAN AGRICULTURAL UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Red mud has also been studied as a fertilizer component in agricultural production, but with the increase of red mud application amount and application time, its adsorption performance decreases, and the long-term and sustainable control ability is limited, and limited by the physical and chemical properties of red mud, under the existing mature technology The product dosage is very low, so the actual utilization rate of red mud in agricultural production is not high
[0008] Therefore, it is of great significance to develop a red mud-based nitrogen and phosphorus slow-release agent that can not only solve the problem of relatively large loss of soluble nitrogen and phosphorus fertilizers at the initial stage of fertilization, but also provide long-term and continuous fertilizer supply.

Method used

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  • Red-mud-based nitrogen phosphorus controlled release agent and preparation method thereof
  • Red-mud-based nitrogen phosphorus controlled release agent and preparation method thereof
  • Red-mud-based nitrogen phosphorus controlled release agent and preparation method thereof

Examples

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Effect test

Embodiment 1

[0052] In this embodiment, the formula of red mud-based nitrogen and phosphorus slow-release granules is as follows:

[0053] 50g of alkaline red mud base material, 5g of hemihydrate gypsum, 3g of modified starch, 40g of mixed nitrogen and phosphorus fertilizer (potassium nitrate + potassium dihydrogen phosphate, the weight ratio of nitrogen and phosphorus is 1:0.6), 2g of agricultural waste (rice straw). The amount of water used is 45g.

[0054] The preparation method of the red mud-based nitrogen and phosphorus sustained and controlled release granules comprises the following steps:

[0055] (1) The alkaline red mud base material is ground by a pulverizer and passed through a 100-mesh sieve, and the agricultural waste is ground and passed through a 200-mesh sieve, and the ingredients are weighed according to the formula and set aside;

[0056] (2) Mix the red mud base material, hemihydrate gypsum and agricultural waste, spray the water agent dissolved with modified starch, th...

Embodiment 2

[0060] In this embodiment, the formula of red mud-based nitrogen and phosphorus slow-release granules is as follows:

[0061] 60g of alkaline red mud base material, 6g of hemihydrate gypsum, 4g of modified starch, 27g of mixed nitrogen and phosphorus fertilizer (potassium nitrate + dipotassium hydrogen phosphate, the weight ratio of nitrogen and phosphorus is 1:0.8), 3g of agricultural waste (crushed wheat husk). The water consumption is 50g.

[0062] The preparation method of the red mud-based nitrogen and phosphorus sustained and controlled release granules comprises the following steps:

[0063] (1) The alkaline red mud base material is ground by a pulverizer and passed through a 100-mesh sieve, and the agricultural waste is ground and passed through a 200-mesh sieve, and the ingredients are weighed according to the formula and set aside;

[0064] (2) Mix the red mud base material, hemihydrate gypsum and agricultural waste, spray the water agent dissolved with modified sta...

Embodiment 3

[0068] In this embodiment, the formula of red mud-based nitrogen and phosphorus slow-release granules is as follows:

[0069] 70g of alkaline red mud base material, 12g of construction gypsum, 5g of modified starch, 15g of mixed nitrogen and phosphorus fertilizer (calcium nitrate + superphosphate, nitrogen and phosphorus weight ratio is 1:1), 5g of agricultural waste (crushed rice husk). The amount of water used was 59g.

[0070] The preparation method of the red mud-based nitrogen and phosphorus sustained and controlled release granules comprises the following steps:

[0071] (1) The alkaline red mud base material is ground by a pulverizer and passed through a 100-mesh sieve, and the agricultural waste is ground and passed through a 200-mesh sieve, and the ingredients are weighed according to the formula and set aside;

[0072] (2) Mix the red mud base material, construction gypsum and agricultural waste, spray the water agent dissolved with modified starch, the water consum...

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Abstract

The invention relates to a red-mud-based nitrogen phosphorus controlled release agent. The red-mud-based nitrogen phosphorus controlled release agent comprises the following raw materials in parts by weight: 50-70 parts of red-mud-based materials, 5-12 parts of gypsum, 3-5 parts of modified starch, 15-40 parts of mixed phosphatic fertilizers and 2-5 parts of agricultural residues. The invention also provides a preparation method of the red-mud-based nitrogen phosphorus controlled release agent. According to the red-mud-based nitrogen phosphorus controlled release agent, the problem that the loss amount of soluble nitrogen and phosphorus fertilizers in the early stage of fertilization is relatively increased is solved, and the fertilizers can be continuously supplied in a long-acting mode.

Description

technical field [0001] The invention relates to the technical field of chemical fertilizers, in particular to a red mud-based nitrogen and phosphorus slow-controlled release agent and a preparation method thereof. Background technique [0002] The loss of nitrogen and phosphorus in farmland is the primary source of nitrate pollution in water bodies, especially groundwater, and the main cause of eutrophication in surface water. [0003] Feng Gu et al. used 32P tracer to study the form and availability of phosphorus in calcareous soil, and found that after water-soluble phosphorus fertilizer was applied to the soil, its availability decreased with time. Shi Chunxia et al. used the method of simulating soil column cultivation to explore the vertical movement and seepage of phosphorus in the soil layer under the condition of flooded paddy fields. The study found that the seepage of phosphorus fertilizer was relatively large at the initial stage of fertilization, and it contained...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C05G3/00
Inventor 罗惠莉罗琳刘艳李雅贞
Owner HUNAN AGRICULTURAL UNIV
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