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Aerobic granulation for organic carbon and nitrogen removal in alternating aerobic-anaerobic sequencing batch reactor

机译:好氧制粒-好氧-厌氧顺序分批反应器中有机碳和氮的去除

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Microbial granules with excellent settleability were successfully developed at different ammonium-N loadings in four sequencing batch reactors run under alternating aerobic-anaerobic conditions. Results showed that heterotrophic, nitrifying and denitrifying populations could co-exist in the microbial granules. The activity of denitrifying bacteria was highly determined by the availability of external carbon source in the anaerobic phase. Complete denitrification was achieved with supply of external carbon source, whereas only partial denitrification occurred with no addition of external carbon source. This study shows that microbial granules cultivated under the alternating aerobic-anaerobic condition could efficiently remove organic carbon and completely convert ammonia to nitrogen gas. A new generation of microbial granules-based bioreactor for organics and nitrogen removal can be envisaged.
机译:在交替的好氧-厌氧条件下运行的四个测序间歇反应器中,在不同的铵态氮含量下成功开发了具有出色沉降性的微生物颗粒。结果表明,异养,硝化和反硝化种群可以共存于微生物颗粒中。反硝化细菌的活性高度取决于厌氧阶段外部碳源的可用性。通过提供外部碳源可以实现完全脱氮,而在不添加外部碳源的情况下仅发生部分脱氮。这项研究表明,在交替的好氧-厌氧条件下培养的微生物颗粒可以有效去除有机碳并将氨完全转化为氮气。可以设想用于有机物和脱氮的新一代基于微生物颗粒的生物反应器。

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