Climber vertical-greening system for medium-/high-rise building
A technology for vertical greening and high-rise buildings, applied in the field of vertical greening systems, can solve the problems of deadly soaking roots of climbing plants, poor drainage of planting boxes, and inability to replace them, and achieve the effects of improving the microclimate environment, benefiting physical and mental health, and easy construction
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Embodiment 1
[0034] Embodiment 1 The climbing plant vertical greening system of a kind of middle and high-rise building of the present invention
[0035] Such as figure 1 , figure 2 , image 3 , Figure 4 As shown, a vertical greening system 100 for climbing plants in middle and high-rise buildings includes a support structure 1 for fixing the system on the building facade, a planting box 2, climbing plants 3, a cultivation substrate 4 for supporting the growth of climbing plants, and a traction and climbing plant. The traction wire rope 5 of the plant, the maintenance handrail 6 of the post-maintenance, and the drip irrigation device 7. The support structure 1 is a triangular support structure. Each group of support structures is composed of three galvanized angle steels. The thickness of the galvanized angle steel is 10mm and the width is 100mm. The three galvanized angle steels are connected by welding. They are connected by 6 expansion bolts 11; the diameter of the expansion bolts...
Embodiment 2
[0039] Embodiment 2 Exploration of the composition ratio of climbing plants and substrates
[0040] The substrate of the present invention is composed of peat, perlite, vermiculite, coconut peat, loess and plant compound bacteria agent. The following substrates are all added with plant compound bacteria agent, purchased from Xiamen Duoduo Biological Pesticide Co., Ltd. Shandong Baorunhe Biology Engineering Co., Ltd., the amount added is 0.2g / L. The volume fraction of other components in the matrix is shown in Table 1. The mixed matrix was drip-irrigated with 1 times the volume of tap water of the matrix, and the water retention rate of the matrix was measured after 24 hours. The measurement results are shown in Table 1.
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