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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Behavior of nitrifying and denitrifying bacteria in a sequencing batch reactor for the removal of ammoniacal nitrogen and organic matter
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Behavior of nitrifying and denitrifying bacteria in a sequencing batch reactor for the removal of ammoniacal nitrogen and organic matter

机译:顺序分批反应器中用于硝化和反硝化细菌去除氨氮和有机物的行为

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摘要

SBR (Sequencing Batch Reactor) treatment systems are made up of an artificial ecosystem where they develop the microorganisms under controlled and limited conditions, in which the pH, organic load and oxygen within the reactor vary spatially and in time. This causes the microbial population to be neither uniform nor constant and therefore reflects the conditions to which they have been exposed during the treatment system. Nitrifying and denitrifying bacteria in a SBR pilot system were monitored over 252 days, using two types of wastewater in the treatment; one with a high amount of organic matter and the other with a high amount of ammonium, both originating from a meat product processing plant. The two types of wastewater were mixed in different proportions with the aim of varying the organic and ammoniacal loading in the influent, thus allowing the most suitable conditions for obtaining high removal efficiencies in the combined treatment of organic matter and ammonia to be determined. The results showed efficiencies of 99%, 98% and 71% in COD_F, BOD5 and NH4~+-N, respectively, and a microbial density of about 2.35 x10~7 MPN/100 mL for nitrifying bacteria and 2.25 x 10~7 MPN/100 mL for denitrifying bacteria.
机译:SBR(测序间歇反应器)处理系统由人工生态系统组成,在受控和有限的条件下,它们会生长微生物,其中反应器内的pH值,有机负荷和氧气会随时间和空间变化。这导致微生物种群既不均匀也不恒定,因此反映了它们在处理系统中所处的条件。在SBR中试系统中,使用两种类型的废水进行了252天的硝化和反硝化细菌监测。一种来自有机食品,另一种来自有机食品,另一种来自有机食品。两种废水以不同的比例混合,目的是改变进水中的有机物和氨含量,从而可以确定最合适的条件,以在有机物和氨的联合处理中获得高去除效率。结果表明,COD_F,BOD5和NH4〜+ -N的效率分别为99%,98%和71%,硝化细菌的微生物密度约为2.35 x10〜7 MPN / 100 mL,微生物密度约为2.25 x 10〜7 MPN / 100 mL用于反硝化细菌。

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