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New steady-state microbial community compositions and process performances in biogas reactors induced by temperature disturbances

机译:温度扰动引起沼气反应器中新的稳态微生物群落组成和工艺性​​能

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Background The microbial community in a biogas reactor greatly influences the process performance. However, only the effects of deterministic factors (such as temperature and hydraulic retention time (HRT)) on the microbial community and performance have been investigated in biogas reactors. Little is known about the manner in which stochastic factors (for example, stochastic birth, death, colonization, and extinction) and disturbance affect the stable-state microbial community and reactor performances. Results In the present study, three replicate biogas reactors treating cattle manure were run to examine the role of stochastic factors and disturbance in shaping microbial communities. In the triplicate biogas reactors with the same inoculum and operational conditions, similar process performances and microbial community profiles were observed under steady-state conditions. This indicated that stochastic factors had a minor role in shaping the profile of the microbial community composition and activity in biogas reactors. On the contrary, temperature disturbance was found to play an important role in the microbial community composition as well as process performance for biogas reactors. Although three different temperature disturbances were applied to each biogas reactor, the increased methane yields (around 10% higher) and decreased volatile fatty acids (VFAs) concentrations at steady state were found in all three reactors after the temperature disturbances. After the temperature disturbance, the biogas reactors were brought back to the original operational conditions; however, new steady-state microbial community profiles were observed in all the biogas reactors. Conclusions The present study demonstrated that temperature disturbance, but not stochastic factors, played an important role in shaping the profile of the microbial community composition and activity in biogas reactors. New steady-state microbial community profiles and reactor performances were observed in all the biogas reactors after the temperature disturbance.
机译:背景技术沼气反应器中的微生物群落极大地影响了工艺性能。但是,在沼气反应器中,仅研究了确定性因素(例如温度和水力停留时间(HRT))对微生物群落和性能的影响。对于随机因素(例如,随机出生,死亡,定居和灭绝)和干扰影响稳定状态微生物群落和反应堆性能的方式知之甚少。结果在本研究中,运行了三个重复的沼气反应器来处理牛粪,以检验随机因素和扰动在塑造微生物群落中的作用。在接种量和操作条件相同的一式三份沼气反应器中,在稳态条件下观察到相似的工艺性能和微生物群落特征。这表明,随机因素在影响沼气反应器中微生物群落组成和活性的过程中起着较小的作用。相反,发现温度扰动在微生物群落组成以及沼气反应器的工艺性能中起着重要作用。尽管对每个沼气反应器施加了三种不同的温度干扰,但是在温度干扰之后,在所有三个反应器中均发现稳态下甲烷产量增加(约高10%)和挥发性脂肪酸(VFA)浓度降低。在温度扰动之后,沼气反应器恢复到原始运行状态。然而,在所有沼气反应器中都观察到了新的稳态微生物群落特征。结论本研究表明温度扰动而非随机因素在塑造沼气反应器中微生物群落组成和活性的过程中起着重要作用。温度扰动后,在所有沼气反应器中均观察到新的稳态微生物群落特征和反应器性能。

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