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首页> 外文期刊>Chemosphere >Changes of nitrogen-removal performance and that of the bacterial community in a mixed culture comprising freshwater and marine anammox bacteria under averaged environmental condition
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Changes of nitrogen-removal performance and that of the bacterial community in a mixed culture comprising freshwater and marine anammox bacteria under averaged environmental condition

机译:在平均环境条件下,包括淡水和海洋厌氧菌的混合培养物中除氮性能和细菌群落的变化

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Nitrogen-removal processes using anammox bacteria are expected to achieve high-rate removal while remaining economical, and their practical applications have been investigated. However, anammox bacteria still have unfavorable characteristics for practical use, including susceptibility to a change in environmental conditions. In this study, with an aim of exploring the adaptability of mixed anammox bacteria to environmental conditions, the shift of nitrogen-removal performance and bacterial community in a mixed culture comprising freshwater anammox bacteria (FAB) and marine anammox bacteria (MAB) were investigated by a continuously stirred tank reactor (CSTR). The CSTR inoculated with the mixed anammox bacteria was operated for 180 days under an averaged condition between freshwater and marine conditions with a temperature of 27.5 degrees C and a synthetic medium with 15 g/L NaCI was used. Nitrogen-removal performance became stable after 114 days and more than 90% of nitrogen that was loaded into the reactor was removed in the range of nitrogen loading rate 0.07-0.42 kg N/m(3)/d. After operating at 0.42 kg N/m(3)/d for one month, a biomass sample was taken and its bacterial community was analyzed by clone-library analysis using a partial sequence of 16S rRNA. Among the clones of anammox bacteria that were made by an anammox-bacteria-specific primer, 97% of them were MAB and only 3% were FAB. These results indicate that the bacterial community including anammox bacteria was evidently changed due to environmental conditions and that the averaged condition in this study was suitable for marine bacteria rather than freshwater bacteria. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用厌氧氨氧化细菌的脱氮工艺有望实现高去除率,同时保持经济性,并且对其实际应用进行了研究。然而,厌氧氨氧化细菌仍然具有不利的实用特性,包括对环境条件变化的敏感性。在这项研究中,为了探索混合厌氧细菌对环境条件的适应性,通过包括淡水厌氧细菌(FAB)和海洋厌氧细菌(MAB)的混合培养物研究了脱氮性能和细菌群落的变化。连续搅拌釜反应器(CSTR)。在平均温度和淡水与海水条件之间的平均条件下,将混合厌氧杆菌细菌接种的CSTR在27.5摄氏度的温度下运行180天,并使用含有15 g / L NaCl的合成培养基。脱氮性能在114天后变得稳定,并且在氮气装载速率0.07-0.42 kg N / m(3)/ d的范围内,除去了超过90%的装入反应器的氮气。在以0.42 kg N / m(3)/ d运行一个月后,采集了一个生物质样品,并使用16S rRNA的部分序列通过克隆文库分析法对其细菌群落进行了分析。由厌氧菌特异性引物制成的厌氧菌克隆中,有97%是MAB,只有3%是FAB。这些结果表明,由于环境条件,包括厌氧氨氧化菌在内的细菌群落发生了明显变化,并且该研究中的平均条件适用于海洋细菌而不是淡水细菌。 (C)2018 Elsevier Ltd.保留所有权利。

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