Modeling Toxicity in Methane Fermentation Systems

G. Parkin, R. Speece
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引用次数: 50

Abstract

Wastewater treatment using anaerobic methane fermentation offers several significant advantages over aerobic methods, but is considered unreliable when treating wastewaters containing toxicants. Three models describing toxicity phenomena are given to help engineers develop more rational design and operational strategies. The first model describes the recovery pattern of methane fermentation systems from slug addition of toxicants as a function of toxicant type and concentration, and time. This model allows for prediction of periods of zero gas production and threshold toxicant concentrations. The second two models incorporate the effect of toxicity on the fundamental Monod-type expressions. Unsteady-state behavior is effectively described by both models and the importance of providing proper biological solids retention time is emphasized. The primary effect of toxicant addition is to alter process kinetics by temporarily or permanently increasing bacterial washout time. Therefore, to minimize the severity of both transient and chronic toxicity, a sufficiently large solids retention time is required.
甲烷发酵系统毒性模拟
使用厌氧甲烷发酵处理废水比好氧方法有几个显著的优点,但在处理含有毒物的废水时被认为是不可靠的。给出了描述毒性现象的三种模型,以帮助工程师制定更合理的设计和操作策略。第一个模型描述了甲烷发酵系统从添加毒物的鼻涕虫中恢复的模式,作为毒物类型、浓度和时间的函数。该模型允许预测零气体产量和阈值毒物浓度的时期。后两种模型纳入了毒性对基本monod型表达的影响。两种模型都有效地描述了非稳态行为,并强调了提供适当的生物固体保留时间的重要性。添加毒物的主要作用是通过暂时或永久地增加细菌冲洗时间来改变过程动力学。因此,为了尽量减少短暂和慢性毒性的严重程度,需要足够长的固体滞留时间。
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