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Changes in the characteristics of organic compounds depending on the nitritation efficiency

机译:有机化合物特性的变化取决于硝化效率

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This study focused on nitritation reactions for the removal of highly concentrated nitrogen from water recycled by a MWTP (Municipal Wastewater Treatment Plant) for the preparation of effluent standards which will be strengthened. To examine the changes that occur during a nitritation reaction with a variety of SRT operations when inducing a stable nitritation reaction, a reactor was operated on a laboratory scale in this study. Digestion tank supernatant flowed into a laboratory-scale reactor and organic matter in the effluent under various operation conditions was classified into four types according to ASM standards using the test known as the OUR (Oxygen Uptake Rate)-test. Most organic matter in the digestion tank supernatant appeared to consist of mainly the S_I component out of non-biodegradable organic matter. During the operation period of the effluent in the laboratory-scale reactor, if a nitritation reaction occurs in a stable manner, most biodegradable organic matter is removed, consisting of mainly the S_I component, like the influent. Particularly, nitrogen was removed after the S_S was removed from the organic matters. Moreover, through a multiple correlation analysis between the operation results from a laboratory-scale reaction bath and the organic composition of the effluent, a method to predict the organic composition of effluents that relies on the operation result of the effluent is proposed.
机译:这项研究的重点是硝化反应,以从MWTP(市政废水处理厂)回收的水中去除高浓度氮,以制备出水标准,并将予以加强。为了研究在诱导稳定的硝化反应时采用各种SRT操作进行的硝化反应过程中发生的变化,本研究在实验室规模下运行了反应器。消化池上清液流入实验室规模的反应器,在各种操作条件下,废水中的有机物根据ASM标准使用称为OUR(氧气吸收率)测试的测试分为四种类型。消化池上清液中的大多数有机物似乎主要由不可生物降解的有机物中的S_I成分组成。在实验室规模反应器的流出物运行期间,如果以稳定的方式发生硝化反应,则大多数可生物降解的有机物都会被去除,主要是由S_I组分组成,就像流入物一样。特别地,在从有机物去除S_S之后去除了氮。此外,通过实验室规模反应池的操作结果与废水的有机组成之间的多重相关分析,提出了一种基于废水的操作结果来预测废水的有机组成的方法。

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