Iron tailing soil improvement agent and iron tailing soil improvement method

A soil improver and soil improvement technology, applied in the field of iron tailings soil improver, can solve the problems of not providing a good environment for plant growth, high cost of improvement methods, unsatisfactory effects, etc., to achieve rich mineral components , good for breathing, easy to implement effect

Active Publication Date: 2018-11-13
SHANDONG UNIV
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Therefore, reducing the waste of land resources, reducing tailings pollution, and optimizing the mine environment can improve land utilization. At present, there are technical measures for tailings soil improvement, but the effects are not ideal, and it cannot provide a good environment for plant growth. Improvement methods The cost is relatively high, the improvement period is long, and the effect is slow

Method used

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  • Iron tailing soil improvement agent and iron tailing soil improvement method
  • Iron tailing soil improvement agent and iron tailing soil improvement method
  • Iron tailing soil improvement agent and iron tailing soil improvement method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] A kind of iron tailings soil improver, described iron tailings soil improver biochar, rice husk, ceramsite, organic fertilizer, attapulgite powder and planting soil, biochar: rice husk: ceramsite: organic fertilizer: attapulgite The mass ratio of stick powder:planting soil is 1:0.5:0.8:2:1.5:1.2.

[0029] Among them, the biochar is prepared as follows: after the agricultural waste is crushed, it is carbonized at a carbonization temperature of 500°C and a heating rate of 5°C / min for 2.5 to 3 hours, and then ground and passed through a 20-mesh sieve. Rice husks are obtained by husking rice paddies, including outer glumes, inner glumes, glumes, and small cobs. The organic fertilizer is made by fermenting animal manure, green fodder, and bran according to the mass ratio: 5:3:2, and eliminating harmful substances in it; the animal manure is a mixture of chicken manure and pig manure. The ceramsite is made of clay or sub-clay as raw material, processed and granulated, and sw...

experiment example 1

[0038] Experimental Example 1: Tests of soil organic matter, pH, and capacity after improvement:

[0039] Experimental site: tailings pond in Dagushan mining area, Anshan City, Liaoning Province. The experimental area is 3.5m×16m. The experimental field is divided into a control area A-1 and four small experimental areas B-1, B-2, and B-3 , B-4, each with an area of ​​3.5m×3.2m.

[0040] A-1 zone does not add improver;

[0041] The improvement agent of comparative example 1 is applied in the B-1 area, and the improvement agent of the comparative example 2 is applied in the B-2 area,

[0042] The improver of Example 1 was applied to the B-3 area, and the improver of Comparative Example 3 was applied to the B-4 area; the application amount was the same.

[0043] Level the tailings pool area to be repaired, remove loose pumice, gravel and sundries, and ensure that it is basically smooth. If there is a steep slope in the repair tailings site, roughen the local smooth slope and ...

experiment example 2

[0069] Experimental Example 2: Effects of improved soil on plants:

[0070] In Experimental Example 1, plant Solanum nigrum on the improved soil of A-1 area and B-1-B-4 area respectively, and select Solanum nigrum with full particles and complete embryos for sowing, and the sowing density is 30 plants / m 2 Water regularly, and after the plants germinate, take samples every 15 days to observe the growth conditions; monitor the following indicators after the plants are mature and harvested:

[0071] Plant height and biomass: Plant height was measured every 15 days.

[0072] The harvested plant samples were fully rinsed with tap water to remove the soil and dirt adhering to the plant samples, and then rinsed with deionized water, and the fresh weight of the biomass was weighed after the water was drained. Then dry it in a vacuum oven at 70°C until constant weight, and weigh the dry weight of the biomass.

[0073] Plant chlorophyll content:

[0074] Using acetone extraction-spec...

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Abstract

The invention relates to an iron tailing soil improvement agent and an iron tailing soil improvement method. The iron tailing soil improvement agent comprises biochar, rice husks, ceramsite, organic fertilizers, attapulgite powder and planting soil. A mass ratio of the biochar to the rice husks to the ceramsite to the organic fertilizers to the attapulgite powder to the planting soil is (0.5-3):(0.2-1):(0.5-1.5):(1-4):(1-2.5):(1.0-2.2). The iron tailing soil improvement agent and the iron tailing soil improvement method have the advantages that the particle size of soil can be improved by theaid of the iron tailing soil improvement agent, the loss rate of water in the soil can be eased, the water retention capacity can be enhanced, organic matters can be quickly and effectively supplemented, the content of organic matters in tailing can be effectively increased, and suitable environments can be provided for plant growth; the rice husks and the ceramsite are matched with one another, the porosity of iron tailing soil can be improved, the hardening degree of the soil can be lowered, the tailing soil can keep in excellent gas-permeable and soft states for a long term, accordingly, the iron tailing soil improvement agent and the iron tailing soil improvement method are favorable for respiration of animals and plants in the soil, and the survival rate can be increased.

Description

technical field [0001] The invention relates to an iron tailings soil improver and an iron tailings soil improvement method, belonging to the technical field of environmental protection. Background technique [0002] The stockpiling of iron tailings not only occupies a large amount of agricultural and forestry land, resulting in a waste of resources, but also brings serious pollution and harm to the living environment of human beings and destroys the ecological balance. As the amount of tailings increases, the occupied land area will continue to expand, which will lead to an imbalance of land resources in the area where the tailings ponds are located. At present, most of the tailings are in an abandoned state. The long-term accumulation has damaged the local ecological environment and polluted the air environment when exposed to the wind. Poor water and soil conservation capabilities are likely to pollute water resources; and the tailings dam failure will cause serious damag...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09K17/40B09C1/08C09K101/00
CPCB09C1/08C09K17/40C09K2101/00
Inventor 张旭杨欢欢李鑫鑫宗传娇王馨蕾崔兆杰
Owner SHANDONG UNIV
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