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首页> 外文期刊>International Biodeterioration & Biodegradation >Shift in bacterial community structure in response to salinity in a continuous anaerobic ammonium oxidation (anammox) reactor
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Shift in bacterial community structure in response to salinity in a continuous anaerobic ammonium oxidation (anammox) reactor

机译:在连续厌氧氧化(厌氧毒剂)反应器中的盐度反应细菌群落结构

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摘要

The effect of gradual salt adaptation on nitrogen removal performance was examined in a continuous flow anaerobic ammonium oxidation (anammox) process. Specific anammox activity (SAA) batch test was conducted to observe the effect of salinity shock loads. SAA rapidly reduced from 100% to 2.3% when salinity increased from 0 g.L-1 to 5.0 g.L-1 NaCl. On the contrary, high total nitrogen removal efficiency (TNRE) of 85% was obtained when salt concentrations gradually increased up to 25.0 g.L-1 NaCl, after 264 d of the continuous anammox operation. Then, the additional increase of salinity by 2.5 g.L-1 resulted in critical negative effect of 63.8% reduction in TNRE. Candidatus Jettenia sp. was dominant as a salt-tolerant anammox species in the salt ranges of 0-27.5 g.L-1 NaCl. In contrast, Candidatus Kuenenia stuttgartiensis was observed at 10-27.5 g.L-1 NaCl with smaller relative abundance than that of Ca. Jettenia sp. This indicates that Ca. Kuenenia sp. would build limited niche in the competition with Ca. Jettenia sp. under sudden increase of salinity stress. Interestingly, heterotrophic bacteria became dominant in autotrophic nitrogen removal process in response to the increase in salt concentration, which could be a cause of anammox system failure.
机译:在连续流动厌氧氧化铵(厌氧毒素)工艺中,研究了逐渐盐适应对氮去除性能的影响。进行了特异性厌氧活动(SAA)分批测试以观察盐度冲击载荷的效果。当盐度从0g1-1至5.0g1-1 NaCl增加时,SAA从100%速度降低至2.3%。相反,当盐浓度逐渐增加至25.0g1-1 NaCl后,获得了高85%的高总氮去除效率(TNRE),在连续厌氧毒素操作之后逐渐增加。然后,盐度的额外增加2.5 G.L-1导致TNRE减少的临界负效应为63.8%。 Candidatus jettenia sp。作为盐范围为0-27.5g1-1 NaCl的耐盐性厌氧物质是占优势。相比之下,在10-27.5 G.1-1 NaCl中观察到Candidatus Kuenenia斯图加蒂,而不是CA的相对丰富。 jettenia sp。这表明了CA. Kuenenia sp。将在与CA竞争中建立有限的利基。 jettenia sp。盐度突然增加盐度压力。有趣的是,异养细菌在抗盐浓度的增加时变得致力于自养氮去除过程中,这可能是厌氧系统衰竭的原因。

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