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Method for repairing and improving soil polluted by uranium mine tailings

A technology for polluted soil and tailings slag, applied in the restoration of polluted soil and other directions, can solve the problems of limited distribution depth of plant roots, difficult to pass heavy metal pollution, difficult to control heavy metals, etc., to achieve strong tillering ability, prevent migration, and enhance efficiency. Effect

Inactive Publication Date: 2010-10-06
HUNAN UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The use of physical and chemical methods to control large-scale heavy metal pollution requires high costs
It takes a long time to purify a large area of ​​metal pollution by using hyperaccumulator plants or enrichment plants, and because the distribution depth of plant roots is limited, heavy metals in the deep soil are difficult to treat, so it is difficult to use plants to remediate heavy metal pollution in large areas in practice.

Method used

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  • Method for repairing and improving soil polluted by uranium mine tailings
  • Method for repairing and improving soil polluted by uranium mine tailings
  • Method for repairing and improving soil polluted by uranium mine tailings

Examples

Experimental program
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Effect test

Embodiment 1

[0033] Plant material: Aeschynomene indica, Miscanthus floridulus and Imperata cylindrica.

[0034] Other materials: cow dung, plant ash made from burning five-jointed awn and imperina.

[0035] Specific steps are as follows:

[0036] (1) In February, the plot was leveled in the uranium tailings slag-contaminated area, and planting ditches were built in a straight line. The long axis of the planting ditch was in the same direction as the rows of cultivated plants. The specifications of the planting ditch for cultivating Wujiemang are: 60cm in length, 40cm in width, and 10cm in depth; 2.0kg of mixed fertilizer is sprinkled in each planting ditch. The specifications of the planting ditch for cultivating Imperatae are: 50cm in length, 40cm in width, and 10cm in depth; 1.0kg of mixed fertilizer is applied to each planting ditch. The specifications of the planting ditch of the saponins in the cultivated field are: 30cm in length, 20cm in width, and 3cm in depth; 1.0kg of mixed fe...

Embodiment 2

[0046] Plant material: Aeschynomene indica, Miscanthus floridulus and Imperata cylindrica.

[0047] Other materials: cow dung, plant ash made from burning five-jointed awn and imperina.

[0048] Specific steps are as follows:

[0049] (1) In February, the plot was leveled in the uranium tailings slag-contaminated area, and planting ditches were built in a straight line. The long axis of the planting ditch was in the same direction as the rows of cultivated plants. The specifications of the planting ditch for cultivating Wujiemang are: 80cm in length, 50cm in width, and 15cm in depth, and 4.0kg of mixed fertilizer is sprinkled in each planting ditch. The specifications of the planting ditch for cultivating Imperatae are: length 60cm, width 50cm, depth 15cm; each planting ditch is sprinkled with 3.0kg of mixed fertilizer. The planting ditch specifications of saponins in the cultivated field are: length 40cm, width 30cm, depth 5cm; each planting ditch is sprinkled with 2.0kg of...

Embodiment 3

[0059] Plant material: Aeschynomene indica, Miscanthus floridulus and Imperata cylindrica.

[0060] Other materials: cow dung, plant ash made from burning five-jointed awn and imperina.

[0061] Specific steps are as follows:

[0062] (1) In February, the plot was leveled in the uranium tailings slag-contaminated area, and planting ditches were built in a straight line. The long axis of the planting ditch was in the same direction as the rows of cultivated plants. The specifications of the planting ditch for cultivating Wujiemang are: length 70cm, width 45cm, depth 12cm; each planting ditch is sprinkled with 3.0kg of mixed fertilizer. The specifications of the planting ditch for cultivating Imperata coronata are: 55cm in length, 45cm in width, and 12cm in depth; 2.0kg of mixed fertilizer is sprinkled in each planting ditch. The planting ditch specifications of saponins in the cultivated field are: length 35cm, width 25cm, depth 4cm; each planting ditch is sprinkled with 1.5k...

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Abstract

The invention discloses a method for restoring and improving uranium tailing residues-contaminated soil, the employed materials comprise Aeschynomene indica, Miscanthus floridulus and Imperatacylindrica, plant ash and cow dropping, the plant ash is made by burning the Miscanthus floridulus and the Imperatacylindrica. The plant ash and the cow dropping is formulated into a mixed fertilizer in accordance with a proportion to be fertilized in a plant ditch that is built in uranium tailing residues-contaminated region, the three plants of the Aeschynomene indica, the Miscanthus floridulus and theImperatacylindrica are planted in groups in the plant ditch. By using the method, dense vegetation can be constructed in a very short time to prominently increase soil nitrogen, organic matters and pH value, and meanwhile, the soil root density is increased and the content of soil water-soluble uranium is reduced obviously. The method has the advantages of simple operation, low cost, good efficiency of preventing the uranium from transfer and diffusion, and beautifying the environment. The technique can be used in reconstructing vegetation in a degraded ecosystem of mines and greening expressways.

Description

technical field [0001] The invention relates to a method for repairing and improving soil polluted by uranium tailings slag. Background technique [0002] The characteristics of high heavy metal content, poor nutrition, and weak water holding capacity lead to lack of vegetation in the area where uranium tailings are stored, serious soil erosion, and heavy metals diffuse with rain and dust. Uranium tailings have become an important source of pollution. [0003] The use of physical and chemical methods to control heavy metal pollution in large areas requires high costs. The use of hyperaccumulators or enrichment plants to decontaminate large areas of metal pollution requires a long cycle, and due to the limited distribution of plant roots, heavy metals in the deep soil are difficult to treat, so it is difficult to use plants to remediate large areas of heavy metal pollution in practice. By screening and cultivating suitable plants and taking auxiliary measures at the same ti...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B09C1/10B09C1/00
Inventor 向言词冯涛曾荣今许中坚严明理彭秀花
Owner HUNAN UNIV OF SCI & TECH
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