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Selection of slow growing organisms as a means for improving aerobic granular sludge stability

机译:选择生长缓慢的生物作为改善好氧颗粒污泥稳定性的方法

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Recently, several groups have showed the occurrence of aerobic granular sludge. The excellent settling characteristics of aerobic granular sludge allow the design of very compact wastewater treatment plants. In laboratory experiments, high oxygen concentrations were needed to obtain stable granulation. However, in order to obtain energy efficient aeration and good denitrification low oxygen concentrations would be required. From earlier research on biofilm morphology, it was learned that slow growing organisms influence the density and stability of biofilms positively. To decrease the growth rate of the organisms in the aerobic granules, easily degradable substrate (e.g. acetate) has to be converted to slowly degradable COD like microbial storage polymers (e.g. PHA). Phosphate or glycogen accumulating bacteria perform this conversion step most efficiently. In this paper it is shown that the selection of such bacteria in aerobic granules indeed led to stable granular sludge, even at low oxygen concentrations.
机译:最近,几个小组显示出好氧颗粒污泥的发生。好氧颗粒污泥的出色沉降特性使其可以设计非常紧凑的废水处理厂。在实验室实验中,需要高浓度的氧气以获得稳定的颗粒。然而,为了获得节能的通气和良好的反硝化作用,将需要低的氧气浓度。从对生物膜形态的早期研究中得知,缓慢生长的生物对生物膜的密度和稳定性产生积极影响。为了降低好氧颗粒中生物的生长速度,必须将易于降解的底物(例如乙酸盐)转化为缓慢降解的COD,如微生物存储聚合物(例如PHA)。磷酸盐或糖原积累细菌最有效地执行了此转换步骤。在本文中表明,即使在低氧浓度下,在好氧颗粒中选择此类细菌的确会产生稳定的颗粒污泥。

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