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Methane conversion efficiency as a simple control parameter for an anaerobic digester at high loading rates

机译:甲烷转化效率作为高负荷下厌氧消化池的简单控制参数

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摘要

The anaerobic digestion process is globally applied to the treatment of highly concentrated wastes such as industrial and rural effluents, and sewage sludge. However, it is known to be relatively unstable. When loaded with high concentrations of organic material, unwanted volatile fatty acids (VFA) are often produced rather than methane (CH_4) gas which can lead to digester acidification and failure. This study investigated digester behaviour under high loading rates, testing the usefulness of stoichiometric methane conversion efficiency as a digester control parameter at high loading rates. Our results show that, in general, the CH_4 production rate was proportional to the feed rate (loading rate). However, at very high loading rates, the CH_4 production rate was not proportional to the increase in the feeding rate. Consequently, VFA accumulated and the H_2 partial pressure increased. The proportionality of the loading rate and gas production rate is stoichiometrically expressed as the conversion efficiency. We found that conversion efficiency was a useful indicator as an early warning of digester imbalance. The digester remained stable at conversion efficiencies above 75%. Dropping below 70% signified the onset of digester failure. As loading rate and methane production data are readily available on-line in most anaerobic digestion plants, the conversion efficiency can be monitored on-line and used as an efficient control technique to maintain safe operation of anaerobic digesters at high loading rates.
机译:厌氧消化工艺在全球范围内都用于处理高浓度废物,例如工业和农村废水以及污水污泥。然而,已知它是相对不稳定的。当装载高浓度的有机物质时,通常会产生不需要的挥发性脂肪酸(VFA),而不是甲烷(CH_4)气体,这会导致消化池酸化和失效。这项研究调查了高负荷率下的消化池行为,测试了化学计量甲烷转化效率作为高负荷率下的消化池控制参数的有用性。我们的结果表明,通常,CH_4的生产率与进料速率(装载速率)成正比。但是,在非常高的加载速率下,CH_4的生成速率与进料速率的增加不成比例。因此,VFA积累并且H_2分压增加。负载率和气体产生率的比例以化学计量表示为转化效率。我们发现,转化效率作为消化池不平衡的早期预警是一个有用的指标。沼气池在转换效率高于75%时保持稳定。低于70%表示消化器发生故障。由于大多数厌氧消化厂都可以在线获得负载率和甲烷生产数据,因此可以在线监测转化效率,并将其用作有效的控制技术,以维持高负载率下厌氧消化池的安全运行。

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