River embankment structure integrating pollutant migration prevention with ecological greening, and construction method
A technology for pollution migration and ecology, applied in the field of environmental engineering, to reduce construction costs, ensure soil and water stability, and shape river ecosystems
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Embodiment 1
[0042] As described in the above steps, first clear the river channel to the river bed 1 elevation according to the plan, and excavate the embankment baseline 5 according to the structural form and size of the ecological gabion 6 and the structural form and size of the clay anti-seepage layer 7; the ecological gabion retaining wall 6 should be based on the flood control of the river channel The level and height of the wall shall be set up to meet the requirements of the dike foundation. After the construction of the dike foundation is completed, the ecological gabion retaining wall 6 shall be constructed on the dike foundation; after the construction of the ecological gabion retaining wall 6 is completed, the ecological gabion A clay protective layer 8 is laid on the water surface, and then a clay anti-seepage layer 7 is backfilled between the coastal polluted soil 4 and the ecological gabion retaining wall 6. The backfill thickness and compaction of the clay anti-seepage layer ...
Embodiment 2
[0044] When the present invention is applied to the slope surface of the polluted soil 4 along the coast, the construction sequence of the clay anti-seepage layer 7 and the ecological gabion retaining wall 6 should be adjusted, that is, the clay anti-seepage layer 7 is constructed first, and then the clay protective layer 8 is laid, and finally the construction is carried out. Ecological construction retaining wall 6, the rest of the construction steps are the same as in Embodiment 1.
Embodiment 3
[0046] The anti-seepage material of the clay anti-seepage layer 7 selects geomembrane, or cement soil, or concrete wall, etc., and its construction steps are consistent with Embodiment 1; Consistent with Example 2.
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