How can we prepare high-quality flower nutrition soil

How can we prepare high-quality flower nutrition soil

With the improvement of people's living standards, the demand for green plants and flowers is also increasing. As a result, more people have joined the industry in flower cultivation.

As we all know, fish can not do without water, flowers and soil are also inseparable, most of the flowers are absorbed from the soil, that is to say, the quality of soil has a very close relationship with the cultivation of flowers. Therefore, in order to meet the growth and development of flower seedlings and make the flowers grow more vivid, the growers specially prepared bed soils with various mineral nutrients, loose ventilation, strong water retention and fertility protection, and no pests and diseases, ie, nutrient soils.

Nutrient soil has obvious differences in nature from ordinary soil, and it is also more conducive to the growth of flowers. However, the production method of nutritious soil is too complex and too cumbersome to be conducive to the cultivation of large areas. In view of this situation, Beijing Huaxia Kangyuan Science and Technology Co., Ltd. has developed a Kinpo substrate nutrient soil fermentation aid.

Jinbao matrix nutrient soil fermentation auxiliaries are the use of advanced microbial fermentation engineering technology, which is faster, better, and saves money and labor than the old method of adding no starter. Can effectively improve the physical and chemical properties of soil and living conditions of soil microorganisms, to ensure the normal development of flowers, flowers and seedlings to get less disease, less dead seedlings, look good, sell well and so on. The user operation is also very simple, and the operation method (operation method of recipe 1) is as follows:

1, preparations do heap. First, deciduous broad-leaved trees or crop straws and grass 10 cubic meters, respectively, piled up into large piles, must be done side heap, side suppression, try to reduce the volume;

2, with nutrient solution. Urea water is then made from 2.5 kg Urea to 150-200 kg of water, and evenly spread on the leaves heap. The moisture content of the fermented heap is required to reach 60-70%. This process is to give the microorganisms "N" nutrient solution (microbiological self-propagation requires "nitrogen", "carbon" and other nutrients, urea contains "nitrogen" high);

Water determination method: hand grab a handful of materials, see the water does not drip, landing is scattered suitable. Slow water fermentation, poor water ventilation, but also lead to "corrupt bacteria" work and produce odor, remember.

3, spread material inoculation. After soaking in urea water, cover the air-permeable cover and place it naturally for 24 hours. The next day, mix 2 kg of Kinpo Substrate Fertilizer Fermentation Auxiliaries and 5 kg of rice bran into a batch of bacteria (ie put 2 kg of The starter was "diluted" into a 7-kilometre feed, and more points made it easier to spread and provide nutrients to the strains. It was evenly sprinkled on piled leaves of broad-leaved trees or crop straws and grass piles. This process is called “inoculation” (that is, the Trilobite substrate nutrient soil fermentation aid is mixed with the above-mentioned other materials and thrown into the heap. Microbial engineering technology is called “inoculation”).

(Note: The rice bran is not an untied one. Fresh rice bran is far superior to old rice bran in nutrition and ventilation. In the absence of rice bran, bran, corn flour, etc. can be used instead.)

4, stamped overturned. After covering the species, cover the air-permeable cover on top of the large pile and shading and shelter from the rain. Under normal circumstances, after the start of the fermentation process, after 5-10 days of fermentation, the temperature can reach 55-60 °C, turning once, and accumulatively 2-3 times to complete the fermentation.

It can be used after fermentation.

Under the nutrition soil formula:

Formula one: leaves of broad-leaved trees (grass straw, grass, etc.) 10 cubic meters + 2.5 kilograms of urea (or 250 kilograms of livestock excreta) + Gymboree substrate nutrient soil fermentation aids 2 kg + rice bran 5 kg, watered 150-200 kg.

Formula II, conifer deciduous (rice husk) 10 cubic meters + 5 kilograms of urea (or 500 kilograms of livestock manure) + substrate nutrient soil fermentation aid 4 kilograms + rice bran 8 kilograms of water 200-300 kilograms.

Formula 3, conifer tree bark 2 cubic +1 kg urea + matrix nutrient soil fermentation aid 1 kg + rice bran 5 kg, watered (urea 1 kg + water 75-100 kg).

Formula 2 and Formula 3 fermentation methods are roughly the same as those of Formula 1, but due to the different raw material formulas, the fermentation time varies.

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