Ecological dike dam stone and preparation method thereof
An embankment stone and ecological technology, applied in the field of ecological embankment stone and its preparation, can solve the problems of huge project, high labor cost and material cost, and long time, so as to achieve low production cost, low labor and material cost, and effective results. fast effect
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Embodiment 1
[0039] Such as figure 1 , 2 As shown, an ecological berm stone includes a substrate 1 for providing nutrients to plants and a surface layer 2 coated outside the substrate 1 to prevent the disintegration of the substrate 1. The ecological berm stone is arranged in the shape of a regular triangular pyramid.
[0040] The base body 1 is embedded with plant seeds. A keel 3 for enhancing the structural stability of the surface layer 2 is arranged inside the surface layer 2, and a through hole 21 for making the base body 1 contact with the outside is opened on the surface layer 2.
[0041] Use process:
[0042] A plurality of ecological berms are spliced with ropes, and then thrown into the river, so that the ecological berms cover the side walls of the river. When the river water enters the base body 1, the plant seeds in the base body 1 germinate and protrude from the through hole 21, so that plants grow in the river channel to improve the ecological environment in the river c...
Embodiment 2
[0044] A kind of preparation method of ecological berm stone, is characterized in that, comprises the following steps:
[0045] S1. After the nutrient soil is sieved, it is mixed with plant seeds and stirred evenly to form matrix 1, wherein the nutrient soil is obtained by mixing leaf humus, garden soil, river sand, and bone meal in a ratio of 40:35:30:8, and the nutrient soil The volume ratio to plant seeds is 1:0.1 to avoid the phenomenon of insufficient supply of nutrient soil fertility due to the large number of plants during the growth of plants.
[0046] S2. Use steel bars to weld to form a regular triangular pyramid-shaped keel 3 .
[0047] S3. A template is set according to the size of the keel 3, and a circular protrusion is arranged on the template. The templates are spliced to form a mould, and the circular protrusion is located inside the mould, and then the keel 3 is placed in the mould.
[0048] S4. Stir the slag, cement and water according to the ratio of 2....
Embodiment 3
[0052]The difference between this example and Example 2 is that the nutrient soil in step S1 is obtained by mixing leaf humus soil, plain sandy soil, decomposed organic fertilizer, and superphosphate in a ratio of 5:4:2:0.7. The mixing of calcium superphosphate and decomposed organic fertilizer makes the fertilizer efficiency of the mixed nutrient soil organic fertilizer higher, and calcium superphosphate can reduce the loss of nitrogen in the decomposed organic fertilizer. Plain sandy soil has the advantages of less clay, smooth drainage, suitable for sowing, raising seedlings and cuttings, suitable for plant growth and reducing the occurrence of plant root rot.
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