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首页> 外文期刊>Journal of environmental sciences >An efficient way to enhance the total nitrogen removal efficiency of the Anammox process by S-0-based short-cut autotrophic denitrification
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An efficient way to enhance the total nitrogen removal efficiency of the Anammox process by S-0-based short-cut autotrophic denitrification

机译:基于S-0的短切型自养反硝化来提高厌氧过程的总氮去除效率的有效方法

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摘要

In order to reduce the amount of NO3--N generated by the Anammox process, and alleviate the competition between denitrification and Anammox for NO2--N in a single reactor, the preference of S-0 for reacting with coexisting NO2--N and NO3--N in the sulfur autotrophic denitrifying (SADN) process and the coupling effect of short-cut SADN and the Anammox process were studied. The results showed that S-0 preferentially reacted with NO3- to produce NO2--N, and then reacted with NO2--N when NO3--N was insufficient, which could effectively alleviate the competition between SADN bacteria (SADNB) and Anammox bacteria (AnAOB) for NO2--N. After 170 days of operation, coupling between short-cut S-0-SADN and the Anammox process was first successfully achieved. SADNB converted the NO3--N generated by the Anammox process into NO2--N, which was once again available to AnAOB. The total nitrogen removal efficiency eventually stabilized at over 95%, and the effluent NO3--N was controlled within 10 mg/L, when high NH4+-N wastewater was treated by the Anammox process. Microbial community analysis further showed that Candidatus Brocadia and Thiobacillus were the functional microorganisms for AnAOB and SADNB. (C) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:为了减少厌氧过程产生的NO 3 - N的量,并在单个反应器中缓解脱氮和厌氧毒素之间的竞争,S-0与共存NO2-N反应的偏好研究了硫自养反硝化(SADN)过程中的NO3 - N和短切SADN和厌氧过程的偶联效果。结果表明,S-0优先与NO 3-产生NO 2-N反应,然后当NO3 - N不足时与NO2 - N反应,这可以有效缓解SADN细菌(SADNB)和厌氧菌之间的竞争(Anaob)No2 - n。经过170天的操作后,首先成功实现了短切S-0-SADN和厌氧过程之间的耦合。 SADNB将anammox进程生成的NO3-n转换为NO2 - N,这再次可供ANAOB。当通过厌氧过程处理高NH 4 + -N废水,总氮去除效率最终稳定在95%以上,流出物NO3-N在10mg / L内控制。微生物群落分析进一步表明Candidatus Brocadia和Thiobacillus是Anaob和SadnB的功能性微生物。 (c)2019中国科学院生态环境科学研究中心。 elsevier b.v出版。

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