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Biodegradability of activated sludge organics under anaerobic conditions

机译:厌氧条件下活性污泥有机物的生物降解性

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From an experimental and theoretical investigation of the continuity of activated sludge organic (COD) compounds along the link between the fully aerobic or N removal activated sludge and anaerobic digestion unit operations, it was found that the unbiodegradable particulate organics (ⅰ) originating from the influent wastewater and (ⅱ) generated by the activated sludge endogenous process, as determined from response of the activated sludge system, are also unbiodegradable under anaerobic digestion conditions. This means that the activated sludge biodegradable organics that can be anaerobically digested can be calculated from the active fraction of the waste activated sludge based on the widely accepted ordinary heterotrophic organism (OHO) endogenous respiration/death regeneration rates and unbiodegradable fraction. This research shows that the mass balances based steady state and dynamic simulation activated sludge, aerobic digestion and anaerobic digestion models provide internally consistent and externally compatible elements that can be coupled to produce plant wide steady state and dynamic simulation WWTP models.
机译:从对活性污泥有机物(COD)化合物沿完全需氧或脱氮活性污泥与厌氧消化装置操作之间的联系的连续性进行的实验和理论研究,发现源自进水的不可生物降解的颗粒有机物(ⅰ)根据活性污泥系统的响应确定,活性污泥内生过程产生的废水和(ⅱ)在厌氧消化条件下也是不可生物降解的。这意味着可以基于被广泛接受的普通异养生物(OHO)内源性呼吸/死亡再生速率和不可生物降解的分数,根据废物活性污泥的活性分数计算出可以厌氧消化的活性污泥可生物降解有机物。这项研究表明,基于质量平衡的稳态和动态模拟活性污泥,好氧消化和厌氧消化模型提供了内部一致和外部兼容的元素,可以结合使用以生成全厂范围的稳态和动态模拟WWTP模型。

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