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Fixed film phosphorus removal - flexible enough?

机译:固定膜除磷-足够灵活吗?

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While biological phosphorus removal (BPR) has been practised for 30 years, up to recently it has been restricted mainly to activated sludge processes, with the corresponding need for large basin volumes. Yet, research with biofilm reactors showed that the principle of alternate anaerobic and aerated conditions was applicable to fixed bacteria by changing the conditions in time rather than in space. Attached growth enhanced biological phosphorus removal (EBPR) systems are attractive because of their compactness and capability to retain high biomass levels. However, the phosphorus extraction depends on backwashes to enhance the phosphorus-rich attached biomass, and correct control of unsteady effluent quality created by frequently modified process conditions. Accordingly, EBPR remains a challenging task in terms of combining nitrogen and phosphorus removal using attached growth. systems. Nevertheless, a combination of activated sludge and biofilm carriers, in the integrated fixed-film activated sludge system, provides treatment opportunities not readily available using suspended growth systems. Current practice is only at the beginning of exploiting the full potential of this combination, but the first full-scale results show that compact tankage and low nutrient results based on biological principles are possible.
机译:尽管生物除磷(BPR)已经实施了30年,但直到最近,它主要局限于活性污泥法,相应地需要大量的水池。然而,对生物膜反应器的研究表明,通过改变时间而不是空间条件,厌氧和充气条件交替的原理适用于固定细菌。附着的生长增强型生物除磷(EBPR)系统具有吸引力,因为它们的紧凑性和保持高生物量水平的能力。然而,磷的提取取决于反洗,以增强富含磷的附着生物量,并正确控制因经常修改的工艺条件而产生的不稳定的出水质量。因此,就利用附着生长将氮和磷的去除相结合而言,EBPR仍然是一项艰巨的任务。系统。然而,在集成的固定膜活性污泥系统中,活性污泥和生物膜载体的结合提供了使用悬浮生长系统无法轻易获得的处理机会。当前的实践只是在开始充分利用这种组合的潜力之初,但是第一个全面的结果表明,基于生物学原理的紧凑型储罐和低养分结果是可能的。

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