Microbial bacterial fertilizer

Microbial bacterial fertilizer is an active fertilizer that mainly relies on the propagation of microorganisms in the soil, changes the soil structure, adjusts the root flora, and forms a new environment conducive to the growth of microorganisms. The effect of microbial fertilizers requires not only the activity of the microorganisms themselves, but also closely related to external climatic conditions.

Through the large-scale reproduction of beneficial bacteria, a favorable population is formed around the plant root system, to prevent the life activities of other harmful bacteria, to decompose soil organic matter, to promote the formation of soil particles, through the active loose soil of beneficial bacteria to regulate soil looseness, fertilizer, fertilizer, water, water, air permeability, decompose pesticide residues in the soil, to avoid pesticide residues to cause damage to crops in the next quarter. Harmful substances emitted by the root system can also decompose the growth process of plants.

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Microbial bacterial fertilizer is an active fertilizer that mainly relies on the propagation of microorganisms in the soil, changes the soil structure, adjusts the root flora, and forms a new environment conducive to the growth of microorganisms. The effect of microbial fertilizers requires not only the activity of the microorganisms themselves, but also closely related to external climatic conditions.

Through the large-scale reproduction of beneficial bacteria, a favorable population is formed around the plant root system, to prevent the life activities of other harmful bacteria, to decompose soil organic matter, to promote the formation of soil particles, through the active loose soil of beneficial bacteria to regulate soil looseness, fertilizer, fertilizer, water, water, air permeability, decompose pesticide residues in the soil, to avoid pesticide residues to cause damage to crops in the next quarter. Harmful substances emitted by the root system can also decompose the growth process of plants.

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The external conditions of microbial fertilizer include temperature, soil moisture, soil nutrients, light intensity and soil pH, and when the number and strength of microbial fertilizer are appropriate, microbial fertilizer can play a normal role. Only under the appropriate external conditions can the microbial fertilizer play a normal role. Strains multiply larger, and metabolism produces elements that are conducive to plant growth, thereby increasing soil fertility.

Nitrogen in the air can be partially utilized, through the growth and metabolism of beneficial bacteria to produce the corresponding enzymes and acids, decompose the insoluble phosphorus and potassium fertilizer in the soil, become the phosphorus and potassium fertilizer that plants can absorb, and can greatly improve the utilization rate of crops to fertilizer. While releasing phosphorus and potassium, it can also promote the release of trace elements in the soil and the utilization of crops, and at the same time, beneficial bacteria can metabolize a variety of substances needed by plants, such as small molecule amino acids, growth stimulants, vitamins, etc.

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