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Stability and performance of two GSBR operated in alternating anoxic/aerobic or anaerobic/aerobic conditions for nutrient removal

机译:在交替的缺氧/好氧或厌氧/好氧条件下操作的两种GSBR的稳定性和性能

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摘要

Two granular sludge sequencing batch reactors (GSBR) with alternating anoxic/aerobic (R1) and anaerobic/aerobic (R2) conditions were operated with a 4-carbon-source synthetic influent. The physical properties of the granular sludge were very good (SVI≈20 mL g−1) and high solid concentrations (up to 35 g L−1) were obtained in the bioreactor operated with a pre-anoxic phase with additional nitrate (R1). In contrast, performance and granule settleability were lower in R2 due to the development of filamentous heterotrophic bacteria on the surface of granules. These disturbances were linked to the fact that a fraction of COD remained during the aerobic phase, which was not stored during the anaerobic period. To stabilize a GSBR with a mixture of organic carbon sources, it is thus necessary to maximize the amount of substrate used during the non-aerated, anaerobic or anoxic, phase. Comparable phosphate removal efficiency was observed in both systems; enhanced biological P removal being greater in anaerobic/aerobic conditions, while the contribution of precipitation (Ca–P) was more significant in anoxic/aerobic conditions.
机译:两个交替的缺氧/好氧(R1)和厌氧/好氧(R2)条件的颗粒污泥测序分批反应器(GSBR)与4-碳源合成进水一起运行。颗粒污泥的物理性质非常好(SVI≈20mL g-1),并且在具有预缺氧相和附加硝酸盐(R1)的生物反应器中获得了高固体浓度(高达35 g L-1)。 。相反,由于颗粒表面上的丝状异养细菌的发展,R2的性能和颗粒沉降性较低。这些干扰与以下事实有关:在好氧阶段保留了一部分COD,而在厌氧阶段则没有将其存储起来。为了用有机碳源的混合物稳定GSBR,因此有必要在非充气,厌氧或缺氧阶段最大程度地使用底物。在两个系统中都观察到了相当的磷酸盐去除效率。在厌氧/好氧条件下,提高的生物磷去除率更高,而在缺氧/好氧条件下,降水(Ca–P)的贡献更为显着。

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