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Biological nitrification-denitrification with alternating oxic and anoxic operations using aerobic granules

机译:使用好氧颗粒进行交替的有氧和无氧操作的生物硝化-反硝化

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Efficient nitrification and denitrification of wastewater containing 1,700 mgl~(-1) of ammonium-nitrogen was achieved using aerobic granular sludge cultivated at medium-to-high organic loading rates. The cultivated granules were tested in a sequencing batch reactor (SBR) fed with 6.4 or 10.2 kg NH _4~+ -N m~(-3)∈day~(-1), a loading significantly higher than that reported in literature. With alternating 2 h oxic and 2 h anoxic operation (OA) modes, removal rate was 45.5 mg NH _4~+ -N g~(-1) volatile suspended solids ~(-1)∈h~(-1) at 6.4 kg NH _4~+ -N m~(-3)∈day~(-1) loading and 41.3∈±∈2.0 at 10.2 kg NH _4~+ -N m~(-3)∈day~(-1) loading. Following the 60 days SBR test, granules were intact. The fluorescence in situ hybridization and confocal laser scanning microscopy results indicate that the SBR-OA granules have a distribution with nitrifers outside and heterotrophs outside that can effectively expose functional strains to surrounding substrates at high concentrations with minimal mass transfer limit. This microbial alignment combined with the smooth granule surface achieved nitrification-denitrification of wastewaters containing high-strength ammonium using aerobic granules. Conversely, the SBR continuous aeration mode yielded a distribution with nitrifers outside and heterotrophs inside with an unsatisfactory denitrification rate and floating granules as gas likely accumulated deep in the granules.
机译:利用中高有机负荷培养的好氧颗粒污泥,对含1,700 mgl〜(-1)氨氮的废水进行了有效的硝化反硝化处理。在顺序分批反应器(SBR)中测试了培养的颗粒,该反应器中加入了6.4或10.2 kg NH _4〜+ -N m〜(-3)∈day〜(-1),负载量明显高于文献报道。在交替的2 h氧化和2 h缺氧运行(OA)模式下,6.4 kg时去除率为45.5 mg NH _4〜+ -N g〜(-1)挥发性悬浮物〜(-1)∈h〜(-1) NH _4〜+ -N m〜(-3)∈day〜(-1)负荷和41.3∈±∈2.0在10.2 kg NH _4〜+ -N m〜(-3)∈day〜(-1)负荷。在60天的SBR测试后,颗粒保持完整。荧光原位杂交和共聚焦激光扫描显微镜结果表明,SBR-OA颗粒的分布具有外部硝化剂和外部异养菌的分布,可以有效地将功能菌株以高的质量转移极限暴露于高浓度的周围基质。这种微生物排列与光滑的颗粒表面相结合,使用好氧颗粒对含有高强度铵的废水进行了硝化-反硝化作用。相反,SBR连续曝气模式产生的分布是,外部硝化菌和内部异养菌,反硝化率不令人满意,并且由于气体可能在颗粒深处积累,颗粒漂浮。

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