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Mechanisms and characteristics of biofilm formation via novel DEAMOX system based on sequencing biofilm batch reactor

机译:基于测序Biofilm批量反应器的新型Deamox系统生物膜形成的机制和特征

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A denitrifying ammonium oxidation (DEAMOX) process has been regarded as an innovative process to simultaneously treat ammonia and nitrate containing wastewaters, whereas very limited research has focused on its application in biofilm system. In this research, a novel DEAMOX process was established with fixed sponge carriers in a sequencing biofilm batch reactor (SBBR). To investigate biofilm formation process and characteristics can encourage further research on DEAMOX system optimization, deteriorated performance recovery strategies and application with actual wastewater. Total nitrogen removal efficiency was maintained at 93.0 % after 240 days of operation. With biofilm growth, the protein-like extracellular polymeric substances (EPS) and tightly-bound EPS (TB-EPS) of biofilms increased from 65.6 to 46.1, to 179.6 and 142.0 mg gVSS(-1), respectively, revealing that protein-like substances and TB-EPS promote biofilm formation. The mechanism of biofilm formation was discussed by analyzing the morphological development and functional bacterial activities of biofilms. Furthermore, high anammox activity was obtained in biofilms with specific NH4+-N removal rates over 4.29 mgN gVSS(-1)h(-1), which were significantly higher than in suspended sludge (2.56 mgN gvss(-1)h(-1)). Quantitative polymerase chain reaction results showed that the abundance of anammox bacteria in biofilms increased from 1.87 % to 11.48 % with biofilm growth. These results imply that mature biofilms formed on carriers and the anammox bacteria were sufficient enriched in DEAMOX-SBBR system. (C) 2018, The Society for Biotechnology, Japan. All rights reserved.
机译:反硝化铵氧化(DEAMOX)方法被认为是同时治疗氨和硝酸盐的废水的创新方法,而非常有限的研究重点是其在生物膜系统中的应用。在该研究中,在测序生物膜批量反应器(SBBR)中,建立了一种新的Deamox方法,用固定海绵载体建立。为了探讨生物膜形成过程和特征可以促进进一步研究Deamox系统优化,劣化的性能回收策略和实际废水。在操作240天后,总氮去除效率保持在93.0%。用生物膜生长,蛋白质的细胞外聚合物物质(EPS)和生物膜的紧密结合的EPS(TB-EP)分别从65.6至46.1%增加到179.6和142.0mg GVSS(-1),揭示蛋白质状物质和TB-EPS促进生物膜形成。通过分析生物膜的形态发育和功能性细菌活性来讨论生物膜形成机制。此外,在生物膜中获得高厌氧活性,具有超过4.29mgN的NH 4 + -N + -N的去除速率(-1)H(-1),显着高于悬浮污泥(2.56mgn GVSS(-1)H(-1) )))。定量聚合酶链反应结果表明,生物膜中的厌氧菌细菌的丰度从生物膜生长增加了1.87%至11.48%。这些结果意味着在载体上形成的成熟生物膜和厌氧菌细菌在Deamox-Sbbr系统中足够富含。 (c)2018年,日本生物技术协会。版权所有。

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