Jinbao Fungus Fertilizer is a type of compound fertilizer that contains a specific quantity of beneficial microorganisms. It cannot fully replace chemical or organic fertilizers, but rather serves as an auxiliary tool in crop cultivation. When using biological bacterial fertilizers, it's important to consider factors such as temperature, humidity, pesticide use, and soil fertility, as these can significantly affect the survival and effectiveness of the bacteria.
Jinbao Bacterium Fertilizer is a non-polluting, biological compound fertilizer that contains live bacteria. It combines natural nitrogen-fixing, phosphate-solubilizing, and potassium-mobilizing bacteria. The most remarkable feature of this fertilizer is that it doesn’t contain traditional nutrients like nitrogen, phosphorus, or potassium. Instead, it helps fix atmospheric nitrogen, break down organic phosphorus and potassium in the soil, and make them available for plant uptake.
The role of bio-fertilizers, including the Gem variety, should not be underestimated. However, there are exaggerated claims suggesting they can completely replace chemical fertilizers, which is not scientifically accurate. On the other hand, dismissing their value entirely is also incorrect. In modern agriculture, the primary sources of nutrients remain organic and chemical fertilizers, while biological fertilizers act more as a supplementary aid.
When applying composite biological fertilizers, several factors should be taken into account. The optimal temperature range for bacterial activity is between 25°C and 37°C. If the temperature drops below 5°C or rises above 45°C, the effectiveness of the fertilizer decreases significantly. Therefore, it’s not recommended for use in extreme weather conditions such as high heat, freezing temperatures, or droughts. Additionally, some types require proper moisture levels—like Azotobacter, which thrives best in soils with a relative moisture content of 60% to 70%.
Biological bacterial fertilizers may not be suitable for soils with high sulfur content, as sulfur compounds can harm or kill the beneficial bacteria. Conversely, they perform well in soils rich in organic matter. In contrast, they are less effective in nutrient-poor soils with low organic content.
It's important to note that biofertilizers are not fast-acting. They work best when combined with chemical fertilizers during critical growth stages when plants need the most nutrients. This ensures maximum efficiency and supports long-term soil health and sustainable farming practices.
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