Preparation method of water-retaining light-weight low-cost nutrient medium suitable for vertical greening
A vertical greening and nutrient matrix technology, applied in the direction of fertilizer mixture, organic fertilizer, fertilization device, etc., can solve the problem of limited load-bearing capacity, and achieve the effect of being conducive to industrial production, simple technology, and strong operability
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Embodiment 1
[0033] The raw materials of the water-retaining, light-weight and low-cost nutrient matrix suitable for vertical greening provided by this embodiment are calculated in parts by weight: 40 parts of decomposed organic waste, 35 parts of peat, 15 parts of perlite, and 10 parts of vermiculite.
[0034] The preparation method of the water-retaining, lightweight and low-cost nutrient substrate suitable for vertical greening provided by this embodiment includes: fully mixing 40 parts of decomposed organic waste, 35 parts of peat, 15 parts of perlite, and 10 parts of vermiculite.
Embodiment 2
[0036] The raw materials of the water-retaining, lightweight and low-cost nutrient matrix suitable for vertical greening provided by this embodiment are as follows in parts by weight: 45 parts of decomposed organic waste, 30 parts of peat, 10 parts of perlite, and 15 parts of vermiculite.
[0037] The preparation method of the water-retaining, lightweight and low-cost nutrient substrate suitable for vertical greening provided by this embodiment includes: fully mixing 45 parts of decomposed organic waste, 30 parts of peat, 10 parts of perlite, and 15 parts of vermiculite.
Embodiment 3
[0039] The raw materials of the water-retaining, lightweight and low-cost nutrient matrix suitable for vertical greening provided by this embodiment are calculated in parts by weight: 60 parts of decomposed organic waste, 20 parts of peat, 10 parts of perlite, and 10 parts of vermiculite.
[0040] The preparation method of the water-retaining, lightweight and low-cost nutrient substrate suitable for vertical greening provided by this example includes: fully mixing 60 parts of decomposed organic waste, 20 parts of peat, 10 parts of perlite, and 10 parts of vermiculite.
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