Nursery stock anti-drought plantation method
A planting method and technology of seedlings, applied in botany equipment and methods, soil preparation methods, gardening methods, etc., can solve problems such as inability to absorb and utilize water, low soil water use efficiency, underdeveloped seedling root system, etc., and achieve a good green landscape Ecological effect, promote the rapid development of the root system, and promote the effect of tree rooting and new shoots
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Embodiment 1
[0018] The drought-resistant planting method of seedling stock of the present invention may further comprise the steps:
[0019] (1) Seedling selection: Select a site with sufficient water, leeward and sunny, and convenient drainage as the planting site, and the planting site needs loose, deep, light loam soil. After selection, use a fungicide to disinfect the soil;
[0020] (2) Soil improvement and fertilization: In the autumn and winter of the year before the seedlings are planted, ditching and land preparation are adopted; after winter freezing, the mellow soil is returned to the pit for afforestation in the spring of the second year, and the topsoil is filled into the ditch to half of the ditch, and the middle layer is applied Soil improver, the dosage of soil improver is 3~5 kilograms per mu; the soil improver includes the following components by weight: 9 parts of ammonium hydrogen phosphate, 17 parts of ammonium chloride, 6 parts of calcium hydroxide, soybean 2 parts of...
Embodiment 2
[0027] Different from Example 1, the rooting agent in step (4) is configured by weight from the following raw materials: 2 parts of naphthalene acetic acid, 3 parts of indole butyric acid, 1 part of cytokinin, 0.7 part of auxin, 0.5 part of vitamin 1 part, 0.3 part of amino acid, 1 part of trace element and 500 parts of water. The soil conditioner in the step (2) includes the following components by weight: 8 parts of ammonium hydrogen phosphate, 15 parts of ammonium chloride, 3 parts of calcium hydroxide, 1 part of soybean enzyme, 1 part of alkaloid, 0.5 part of paclobutrazol, bamboo charcoal powder 6 servings. The tree nutrient solution in the step (5) comprises the composition of following parts by weight: 3 parts of ferric citrate, 3 parts of amino acid, 1.5 parts of potassium chloride, 1 part of sodium borate, 0.5 part of indole butyric acid, 0.5 part of sodium nitrophenolate , 0.1 part of calcium nitrate, 0.2 part of ferrous sulfate, 3 parts of ethanol, 0.3 part of ammo...
Embodiment 3
[0029] Different from Example 1, the rooting agent in step (4) is configured by weight of the following raw materials: 4 parts of naphthaleneacetic acid, 5 parts of indole butyric acid, 1.3 parts of cytokinin, 1.5 parts of auxin, 0.8 parts of vitamin parts, 0.5 parts of amino acids, 1.5 parts of trace elements and 600 parts of water. The soil conditioner in step (2) comprises the composition of following parts by weight: 10 parts of ammonium hydrogen phosphate, 20 parts of ammonium chloride, 10 parts of calcium hydroxide, 3 parts of soybean enzymes, 2 parts of alkaloids, 0.7 part of paclobutrazol, bamboo charcoal powder 15 servings. The tree nutrient solution in the step (5) comprises the composition of following parts by weight: 6 parts of ferric citrate, 5 parts of amino acids, 3 parts of potassium chloride, 2 parts of sodium borate, 1.5 parts of indole butyric acid, 1.5 parts of compound sodium nitrophenolates , 0.3 parts of calcium nitrate, 0.4 parts of ferrous sulfate, 8...
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