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Development of simultaneous partial nitrification, anammox and denitrification (SNAD) process in a sequential batch reactor

机译:在连续间歇反应器中同时进行部分硝化,厌氧氨化和反硝化(SNAD)工艺的开发

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Simultaneous partial nitrification, anammox and denitrification (SNAD) process was developed in a sequential batch reactor (SBR) and the influence of hydraulic retention time (HRT) on the SNAD process was investigated. Around 96% NH_4~+-N removal and 87% COD removal were observed at 9. d HRT. Marginal decreases in the removal efficiencies were observed when the HRT was reduced to 3. d or the loading rate was increased by three times. On the other hand, a drastic decrease in NH_4~+-N and COD removals were observed when the DO, pH and temperature were dropped shockingly. The response of the SNAD system towards the shock in substrate loading and operating conditions was evaluated by sensitivity index. Finally, the extent of total nitrogen (TN) removal by partial nitrification with anammox and denitrification was modeled using stoichiometric relationship. Modeling results indicated a TN removal of 85-87% by anammox with partial nitrification and 7-9% by denitrification.
机译:在顺序间歇式反应器(SBR)中开发了同时进行部分硝化,厌氧和反硝化(SNAD)工艺,并研究了水力停留时间(HRT)对SNAD工艺的影响。在第9 d HRT观察到NH_4〜+ -N去除约96%,COD去除约87%。当HRT降至3 d或加载速率提高了3倍时,观察到去除效率的边际降低。另一方面,当DO,pH和温度急剧下降时,NH_4〜+ -N和COD的去除量急剧下降。通过灵敏度指数评估了SNAD系统对基板加载和操作条件下的冲击的响应。最后,使用化学计量关系对通过厌氧氨氧化和反硝化进行的部分硝化去除的总氮(TN)程度进行了建模。模拟结果表明,通过部分硝化的厌氧氨氧化去除了TN的85-87%,通过反硝化去除了TN的7-9%。

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