沼氣是一種可再生能源,它能夠作為鄉(xiāng)村炊事、照明等生活用能,是鄉(xiāng)村完成燃?xì)饣囊粭l有效途徑。
Biogas is a kind of renewable energy. It can be used for cooking and lighting in rural areas. It is an effective way to complete the combustion of gas in rural areas.
沼氣與養(yǎng)殖、種植相分離停止綜合應(yīng)用,具有明顯的經(jīng)濟(jì)效益。近年來,以沼氣為紐帶展開多項功用的綜合應(yīng)用,多梯級、多層次、良性循環(huán)應(yīng)用的生態(tài)農(nóng)業(yè)在綠色農(nóng)業(yè)中占有無足輕重的位置。在這里沼氣脫硫廠家也提示大家,為了更好地發(fā)揮以沼氣為紐帶的生態(tài)農(nóng)業(yè)的作用,促進(jìn)綠色農(nóng)業(yè)的開展,進(jìn)步沼氣池的產(chǎn)沼氣率具有重要意義。
The separation of biogas from aquaculture and planting has stopped comprehensive application, which has obvious economic benefits. In recent years, biogas has been used as a link to develop a comprehensive application of many functions. Eco-agriculture with multi-step, multi-level and benign recycling applications occupies an insignificant position in green agriculture. Here, biogas desulfurization manufacturers also remind you that in order to better play the role of Biogas-linked ecological agriculture, promote the development of green agriculture, improve the biogas production rate of biogas digesters is of great significance.
沼氣發(fā)酵的影響要素有很多,比方發(fā)酵溫度、pH值、微生物種群以及物料預(yù)處置狀況等。沼氣發(fā)酵是沼氣微生物在厭氣條件下合成有機物質(zhì)產(chǎn)生甲烷和二氧化碳的過程。在這一過程中,非產(chǎn)甲烷細(xì)菌與產(chǎn)甲烷細(xì)菌結(jié)合作用,發(fā)酵的效率與這兩大類群微生物之間能否諧和生長直接相關(guān)。在厭氧系統(tǒng)中,存在著品種繁多,關(guān)系復(fù)雜的微生物區(qū)系。甲烷的產(chǎn)生是這個微生物區(qū)系各種微生物互相均衡、協(xié)同作用的結(jié)果。因而,研討發(fā)酵過程中微生物生理群的變化及其所惹起的物質(zhì)轉(zhuǎn)化對產(chǎn)氣效率的影響,關(guān)于有效地控制發(fā)酵過程,進(jìn)步產(chǎn)氣效率具有重要的意義。
There are many factors affecting biogas fermentation, such as fermentation temperature, pH value, microbial population and material pretreatment. Biogas fermentation is a process in which biogas microorganisms synthesize organic matter to produce methane and carbon dioxide under anaerobic conditions. In this process, non-methanogenic bacteria combine with methanogenic bacteria, and the fermentation efficiency is directly related to the harmony and growth of these two groups of microorganisms. In the anaerobic system, there are many kinds of microbial flora with complex relationships. Methane production is the result of the balanced and synergistic interaction of various microorganisms in this microbial flora. Therefore, it is of great significance to study the changes of microbial physiological groups and the effect of substance transformation on gas production efficiency in the process of fermentation, so as to effectively control the fermentation process and improve the gas production efficiency.
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