Ecological restoration method for miscanthus sinensis in acid mining area
A technology for ecological restoration and mining areas, applied in the restoration of polluted soil, etc., can solve the problems of high maintenance cost, high input cost, long construction period, etc., to achieve the effect of no secondary pollution, improved survival rate, and low input cost.
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Embodiment 1
[0102] This embodiment provides a method for ecological restoration of Chinese awns in acid mining areas, and the implementation site is in the sulfur mining area of Le'an Township, Dafang County, Guizhou Province.
[0103] According to the GB 15618 Soil Environmental Quality Standard, the soil environmental quality is classified. The mining area belongs to Class III.
[0104] Carry out plant sampling and soil sampling, and determine the content of related substances respectively. Refer to "LY / T2770 Technical Regulations for Vegetation Ecological Restoration of Abandoned Land in Southern Nonferrous Metal Mining Areas". The comprehensive fertility index was calculated according to the nutrient index, and the evaluation level was low.
[0105] Use seedling-raising substrates including 50% fermented straw, 25% peat soil, 10% vermiculite, 5% perlite, and 10% loess mixed with water; after pouring the substrate with 800mg / L concentration of carbendazim solution, put the substrate ...
Embodiment 2
[0110] This embodiment provides a method for ecological restoration of Chinese awns in acidic mining areas, and the implementation site is in the sulfur mining area of Le'an Township, Dafang County, Zhouzhou. The difference from Example 1 is that different plots are selected.
[0111] According to the GB 15618 Soil Environmental Quality Standard, the soil environmental quality is classified. The mining area belongs to Class III.
[0112] Carry out plant sampling and soil sampling, and determine the content of related substances respectively. Refer to "LY / T2770 Technical Regulations for Vegetation Ecological Restoration of Abandoned Land in Southern Nonferrous Metal Mining Areas". The comprehensive fertility index was calculated according to the nutrient index, and the evaluation level was low.
[0113] Use seedling raising substrates including 55% fermented straw, 22% peat soil, 5% vermiculite, 6% perlite, 12% loess mixed with water; after pouring the substrate with 1000m...
Embodiment 3
[0118] The difference from Example 2 is that other plots in the mining area are selected for restoration.
[0119] The sulfur mining area in Le'an Township, Dafang County, Guizhou Province was repaired according to different areas, and the average value of the relevant indicators before and after the restoration was calculated. The conclusions are as follows:
[0120] After restoration, the average pH value of the soil in the mining area increased by 0.54, and the acidification phenomenon was improved. Soil organic matter, total nitrogen and water content increased by 194.5%, 78.7% and 933.6% respectively, indicating that the soil properties of the abandoned mine land have also improved;
[0121] Heavy metal reduction: In the tailings area where Miscanthus distribution coverage is about 75%, the average amount of Pb, Zn, Cu and Cd in the soil migrated by Miscanthus is 2471.3, 4037.4, 69.4 and 28.3 mg·kg -1 .
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