The types of bacteria's biological fermentation were divided into two types: breathing and fermentation. In the process of biochemistry, the hydrogen removed by the nutrients of the bacteria (such as sugar) through the action of dehydrogenases needs to be transported through a series of intermediate hydrogen carriers (such as Cofactor I, Cofactor II, flavoprotein, etc.), and finally the hydrogen is handed over to the hydrogen recipient. The process of biological fermentation using an organic substance as the hydrogen receptor was called breathing. The process using molecular oxygen as the hydrogen receptor was called requiring oxygen, while the process using an organic compound (such as nitrates and sulphates) as the hydrogen receptor was called requiring oxygen. In the process of biological fermentation, all kinds of organic matter was used as the hydrogen receptor. Most of the pathogenic bacteria only need to breathe or ferment. Read more exciting novels for free
There were three main functions of biological fermentation: one was to produce energy, which provided usable energy for the body; the second was to produce reducing power; and the third was to produce small molecular intermediate toxins. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Biological bacteria fertilizer played an important role in orchid maintenance. It didn't have the conditions for fertilizers such as nitrogen, phosphorus, and potash, but it could activate the orchid plant material and make the nutrients in the plant material more effectively separate out. Its beneficial bacteria could make the orchid bacteria in the flower pot more active and increase the ability of the orchid root to absorb nutrients. High-tech biological fertilizers such as Orchid Fungus King, Zhiquan, Xishuo, and Lanling King not only provided comprehensive nutrition, but also activated soil vitality and resistance to adversity. Using biological fertilizer during the flowering period of orchids could enhance the resistance of orchids and promote the healthy growth of orchids. Moreover, the biological bacteria fertilizer did not have the irritation of chemical fertilizers. It would not cause side effects to the orchids in the pot when it was used on the same day. It could also promote the growth of beneficial bacteria in the pot and make them more active, which was beneficial to the orchids in the pot and shortened the entire pot period. In addition, biological fertilizer products such as EM original dew could be used as orchid nutrient solution, organic planting biological fertilizer, rooting agent, soil improvement ferment agent, etc. Its scope of application was plants, and the main component was the effective number of living bacteria, with a content of more than 10 billion. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
There were two types of reactions in the reaction of the fermentation of the sulfuric acid. One was the combustion reaction. The complete combustion of the phosphorus acid in oxygen produced carbon dioxide and water. This was a type of combustion reaction in the form of an oxidization reaction. Most organic matter could undergo this type of oxidization reaction. The other was that the functional groups were oxided. For example, when a long time in the air, a pinkish color would be formed from the oxidisation of the functional groups of the organic matter. In addition, alkene, alkyne, the homolog of the aromatic group, and so on, could be oxided by the acidic solution of KMn O2, causing it to fade; Aldenals could be oxided by bromic water, causing it to fade, and so could the acidic solution of sulfuric acid. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The ionisation of the acid was a type of heat absorption reaction. There were many factors that could affect the dissolution of the acid, such as adding water to dilute it, adding a base, and heating it up. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The mechanized principle of the biological fermentation bed mainly involved the working principle of the raking machine or the throwing machine of the fermentation bed. Firstly, the manure from the farm was collected and evenly spread on the bedding in the fermentation tank. Then, the manure and the bedding were fully mixed by the fermentation bed rake or the throwing machine. During this process, the crude protein, crude fat, residual starch, carboric acid, and other organic compounds in the manure were degraded or decomposed by the use of the fermentation of the microorganisms, producing oxygen, carbon dioxide gas, water, decaying substances, and heat. The temperature in the center of the fermentation tank could reach more than 55 degrees Celsius. Through the flipping of the flipping machine, the water in it would evaporate, leaving only a small amount of residue that would eventually become organic fertilizer. This mechanized operation could enable organic waste to quickly achieve biotechnology, dehydration, sterilization, detoxification, and fermentation, achieving the purpose of harmless, resourceful, and reduction treatment. Moreover, it had low energy consumption, stable product quality, and compact structure. It could make full use of some beneficial microorganisms to promote the rapid fermentation of organic waste such as livestock manure. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The application of the biological inoculants during seedling cultivation can be carried out according to the following steps: soak the seeds for 15 minutes to half an hour a day in advance, and then dry them in a cool place; mix the inoculants evenly into the seedling cultivation medium 1 - 2 days in advance, and sprinkle them with a little water to let the inoculants grow in advance. At the same time, cover them with a thin film to prevent foreign bacteria from mixing in. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Biological fertilizer could be used to grow orchids. Although the biological bacteria fertilizer itself did not have the conditions for fertilizers such as nitrogen, phosphorus, and potash, it could activate the orchid plant material, allowing the nutrients in the plant material to be more effectively separated. Its beneficial components could make the orchid bacteria in the flower pot more active and improve the ability of the orchid root to absorb nutrients. In addition, the bacteria fertilizer contained the big element fertilizer, nitrogen, phosphorus and potassium, as well as organic matter, humic acid, chelated trace elements and beneficial biological bacteria. It could not only meet the needs of orchids for big element compound fertilizer, but also help them supplement trace elements and improve the soil environment. Using biological fertilizer during the flowering period of orchids could enhance the resistance of orchids and promote the healthy growth of orchids. It is recommended to apply less and more frequently. You can spread a small amount of microorganisms once a month and mix them evenly with the soil. You can also use microorganisms mixed with water to irrigate or spray on the leaves (once a week). <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Biological bacteria fertilizer could be used to raise orchids. The roots of orchids contained symbiotic fungi, which were mycorhiza plants. Mycorhiza was the basis of their life cycle such as growth and flowering. The fungi and roots needed to maintain a stable balance in order to flourish. The biological fertilizer could activate the orchid plant material, allowing the nutrients in the plant material to be more effectively separated. Its beneficial bacteria could make the orchid bacteria in the flower pot more active and improve the ability of the orchid root to absorb nutrients. When making orchid nutrient soil, the organic matter could be fermented into high-quality organic fertilizer and then added with appropriate amount of microorganisms. If the orchid's leaves were light and yellow, and the plant was weak and lacked fertilizer during its growth, the nutrient fertilizer could be diluted according to a certain proportion and then poured into the rootzone with a watering can to apply fertilizer. In addition, the microorganisms were pure biological agents, which were relatively safe. The beneficial bacteria could improve the soil environment, and its carrier also contained nitrogen, phosphorus, and potassium, as well as the elements needed for orchid growth. Even if it was applied too much, there would be no adverse effects. It was suitable for novice orchid farmers. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
In the biological chain, bacteria and fungi mainly played the role of decomposing. They could break down the remains of animals and plants into water, carbon dioxide, and other minerals. These minerals could be absorbed and utilized by plants to produce organic matter, thus completing the material cycle. For example, in the soil ecosystem, bacteria and fungi were very important in regulating biological activities in the soil, such as decomposing organic matter, controlling nutrient circulation, and carbon storage. Without bacteria and fungi, the remains of animals and plants would pile up like mountains, and animals and plants would lose their living space. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Carbonic acid could not undergo a dehydration reaction, but only an ionisation reaction. Its ionisation equation was H <anno data-annotation-id ="0000008 - 4000 - 4000 - 8000 - 9000 - 90000000000"></anno></anno> COH + HCO (mainly based on the first step of ionisation). <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>