...
首页> 外文期刊>Applied Microbiology and Biotechnology >Mechanisms and microbial structure of partial denitrification with high nitrite accumulation
【24h】

Mechanisms and microbial structure of partial denitrification with high nitrite accumulation

机译:亚硝酸盐积累高的部分反硝化机理及微生物结构

获取原文
获取原文并翻译 | 示例

摘要

Nitrite (NO2 (-)-N) accumulation in denitrification can provide the substrate for anammox, an efficient and cost-saving process for nitrogen removal from wastewater. This batch-mode study aimed at achieving high NO2 (-)-N accumulation over long-term operation with the acetate as sole organic carbon source and elucidating the mechanisms of NO2 (-)-N accumulation. The results showed that the specific nitrate (NO3 (-)-N) reduction rate (59.61 mg N VSS-1 h(-1) at NO3 (-)-N of 20 mg/L) was much higher than specific NO2 (-)-N reduction rate (7.30 mg N VSS-1 h(-1) at NO3 (-)-N of 20 mg/L), and the NO2 (-)-N accumulation proceeded well at the NO3 (-)-N to NO2 (-)-N transformation ratio (NTR) as high as 90 %. NO2 (-)-N accumulation was barely affected by the ratio of chemical oxygen demand (COD) to NO3 (-)-N concentration (C/N). With the addition of NO3 (-)-N, NO2 (-)-N accumulation occurred and the specific NO2 (-)-N reduction rate declined to a much lower level compared with the value in the absence of NO3 (-)-N. This indicated that the denitrifying bacteria in the system preferred to use NO3 (-)-N as electron acceptor rather than use NO2 (-)-N. In addition, the Illumina high-throughput sequencing analysis revealed that the genus of Thauera bacteria was dominant in the denitrifying community with high NO2 (-)-N accumulation and account for 67.25 % of total microorganism. This bacterium might be functional for high NO2 (-)-N accumulation in the presence of NO3 (-)-N.
机译:反硝化过程中亚硝酸盐(NO2(-)-N)的积累可以为厌氧氨氧化提供底物,这是一种高效,节省成本的废水脱氮工艺。这项批处理模式研究旨在通过长期运行以乙酸盐作为唯一的有机碳源来实现高NO2(-)-N积累,并阐明NO2(-)-N积累的机理。结果表明,特定硝酸盐(NO3(-)-N)的还原速率(在NO3(-)-N为20 mg / L时59.61 mg N VSS-1 h(-1)的还原速率远高于特定NO2(- -N还原速率(在NO3(-)-N为20 mg / L时为7.30 mg N VSS-1 h(-1),并且在NO3(-)-N处NO2(-)-N积累进展良好NO 2(-)-N转化率(NTR)高达90%。 NO2(-)-N的累积几乎不受化学需氧量(COD)与NO3(-)-N浓度(C / N)的比率的影响。与不添加NO3(-)-N的值相比,在添加NO3(-)-N的情况下,发生了NO2(-)-N的积累,NO2(-)-N的比还原率下降到更低的水平。 。这表明系统中的反硝化细菌优选使用NO3(-)-N作为电子受体,而不是使用NO2(-)-N。此外,Illumina高通量测序分析表明,Thauera细菌属在反硝化群落中占主导地位,具有较高的NO2(-)-N积累,占微生物总数的67.25%。在存在NO3(-)-N的情况下,此细菌可能对NO2(-)-N的高积累起作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号