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Anaerobic digestion from the viewpoint of microbiological, chemical, and operational aspects — a review

机译:微生物,化学和操作方面的厌氧消化—综述

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Anaerobic digestion (AD) is intrinsically a sequential complex chemical and biochemical process, and many factors (microbiological, operational, and chemical) can affect its performance. The great complexity of AD may lead to many serious problems (such as instability, long retention times, low efficiency, and high polluted supernatant) that prevent this technique from being widely used and commercialized. The aim of this paper is to review the present knowledge of the AD process in view of its microbiological, operational, and chemical aspects. Different groups of anaerobic microorganisms with specific growth conditions, physiological properties, and metabolic activities are involved in the AD process. Interactions of anaerobic microorganisms are incredibly complicated, and the effective performance of AD strongly depends on the balance of these relationships. The syntrophic interaction of acetogens and methanogens is the most important relationship in AD because acetogenesis and methanogenesis reactions under thermodynamic standard conditions are endergonic and naturally do not occur. Moreover, operational and chemical factors affect the anaerobes in certain ways. It is believed that there are many ambiguous points in AD that are not yet known.Therefore, by controlling and monitoring each of the microbiological, operational, and chemical parameters, AD performance may be enhanced.
机译:厌氧消化(AD)本质上是一个顺序复杂的化学和生化过程,许多因素(微生物,操作​​和化学)都可能影响其性能。 AD的高度复杂性可能导致许多严重的问题(例如不稳定,保留时间长,效率低和上清液污染严重),从而阻碍了该技术的广泛应用和商业化。本文的目的是鉴于其微生物学,操作和化学方面,回顾一下AD过程的当前知识。具有特定生长条件,生理特性和代谢活性的不同种类的厌氧微生物参与了AD过程。厌氧微生物的相互作用非常复杂,而AD的有效表现在很大程度上取决于这些关系的平衡。乙酸原和产甲烷菌的同养相互作用是AD中最重要的关系,因为在热力学标准条件下产乙酸和产甲烷反应是阴冷的,自然不会发生。而且,操作和化学因素以某些方式影响厌氧菌。据信,AD中存在许多尚不清楚的歧义点,因此,通过控制和监测微生物,操作​​和化学参数中的每一个,AD性能可以得到增强。

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