In fact, it is very common for the soil to harden during flower cultivation, because the nutrient of the soil matrix itself is limited. If it is not fully supplemented after being absorbed by the root, it will dry and crack. At this time, we need to add something to help the soil restore nutrients, so as to restore the growth of plants to normal p>
Many times, when we encounter the appearance of soil hardening, we first want to shovel with a shovel, but this method can't be done, because the soil hardens and cracks. At this time, the flower roots inside are almost bonded with the soil. If we shovel directly with a shovel, it may damage the flower roots. If the root of flowers is broken, the growth of plants will not be good p>
Add some small things to the soil to help restore nutrients. We can choose to add a little pine needles. Although pine needles are insignificant, mixing with the soil can enhance the nutrients and permeability of the soil, so as to promote the growth of plants. Moreover, pine needles are still something that can be seen everywhere in life. It is good to use them at no cost p>
Pine needle is also a plant family and genus, so the nutrients are relatively mild and easy to absorb. In addition, its texture is very hard. We can mix it with the soil to enhance a certain degree of air permeability and porosity. Before using pine needles, we need to expose them to the sun for disinfection. After all, they are collected outdoors, which must contain more bacteria and impurities p>
After the pine needle is treated, we can choose to pad it at the bottom of the flower pot as base fertilizer or directly mix it with the soil to enhance nutrients, which can play a good role in improving the hardened soil and restore the original permeability and nutrition p>
Soil hardening is actually a common problem in flower cultivation. We should remember to use the correct method to improve it, so it will not affect the growth of plants. I don't know how we can improve it when we encounter soil hardening? Can share together p>