Pipeline-type moisture cultivation method for guardrails or enclosing wall greening plants
A pipe-type, plant-based technology, applied in botany equipment and methods, cultivation, soilless cultivation, etc., can solve the problems of difficult planting of green plants, low plant survival rate, cumbersome management, etc., to solve daily maintenance problems, solve The effect of wilting plants and convenient spatial erection
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Embodiment 1
[0037] The invention discloses a pipeline-type hydroponics method for greening plants on guardrails or walls, which specifically includes the following steps:
[0038] Step 1: If figure 1 As shown, it is the construction effect diagram of the water aeroponics pipeline used for guardrail greening according to the present invention. Compared with other substrates or soil cultivation, the pipelined water aeroponics method is more convenient, practical, clean and fast, and the place suitable for pipelined water aeroponics greening is relatively Many, such as guardrails, wall headers, building skins (including building exterior walls and roofs, etc.), flower corridors, balcony spaces, etc., according to field survey data, according to guardrail conditions, such as surrounding lighting conditions and the height of the guardrail from the ground, The direction, length, configuration and width of the handguard, etc., determine the suitable greening plants and pipeline layout, draw the ...
Embodiment 2
[0054] Pipelined water aeroponics method for peach trees ( Figure 6 )
[0055] Difference with embodiment 1 is the difference of nutrient solution formula, the nutrient solution formula of peach, according to the growth characteristic of peach tree and production practice formulate the following nutrient solution formula suitable for peach tree, the theoretical proportion (ppm) of its element is as follows:
[0056] N-P-K-Ca-Mg-S-Cu-Zn-Mn-Fe-Mo-B = 210-31-235-200-48-64-0.02-0.05-0.5-2.5-0.01-0.5. According to the theoretical combination formulating compound combination formula for production application, its formula (g / t) is: calcium nitrate tetrahydrate 1106.5g, magnesium sulfate heptahydrate 486.8g, potassium nitrate 591.5g, ammonium dihydrogen phosphate 115.5g, chelate Iron 19.2g, manganese sulfate monohydrate 1.54g, boric acid 2.86g, copper sulfate pentahydrate 0.08g, sodium molybdate dihydrate 0.025g, zinc sulfate dihydrate 0.15g. According to the combination of the ab...
Embodiment 3
[0058] Elevated pipelined hydroponics method for watermelon ( Figure 7 )
[0059] The difference from the above examples lies in the difference of the nutrient solution formula. The nutrient solution formula of watermelon is assembled according to the following formula, and its theoretical combination (ppm) is as follows: N: P: K: Ca: Mg: S = 160.28: 56.9 : 241.69: 169.7: 24.65: 54.6, converted into compound formula (g / t) according to the theoretical combination: chelated iron 21.5g, magnesium sulfate heptahydrate 243.4g, potassium nitrate 403.4g, manganese sulfate monohydrate 1.54g, Boric acid 2.86g, copper sulfate pentahydrate 0.08g, sodium molybdate dihydrate 0.025g, zinc sulfate dihydrate 0.15g, calcium nitrate tetrahydrate 589.9g, potassium dihydrogen phosphate 135.9g. The EC value of watermelon nutrient solution is generally controlled at 1.8-2.0mS / cm at the seedling stage. With the growth of the plant, the EC value of the nutrient solution increases continuously. Whe...
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