...
首页> 外文期刊>ACS Omega >Treatment of Low C/N Ratio Wastewater by a Carbon Cloth Bipolar Plate Multicompartment Electroenhanced Bioreactor (CBM-EEB)
【24h】

Treatment of Low C/N Ratio Wastewater by a Carbon Cloth Bipolar Plate Multicompartment Electroenhanced Bioreactor (CBM-EEB)

机译:用碳布双极板多分量电增强生物反应器处理低C / N比废水(CBM-EEB)

获取原文

摘要

The traditional biological denitrification process has the problems of low removal rates and lack of a carbon source when treating wastewater with high ammonia nitrogen concentration and a low carbon–nitrogen ratio. Based on a bio-electrochemical system (BES), a novel carbon cloth bipolar plate multicompartment electroenhanced bioreactor (CBM-EEB) system was constructed. In this study, nitrogen removal efficiency and enrichment of functional bacteria using CBM-EEB under different voltage conditions were investigated. The results from next-generation sequencing indicated that the CBM-EEB included heterotrophic nitrification and aerobic denitrification (HNAD) and was dominated by heterotrophic nitrification aerobic denitrifying bacteria (HNADB). The applied voltage was confirmed as having the ability to regulate the microbial community structure and abundance of functional genes, thereby further enhancing the nitrogen removal efficiency of the system. The total nitrogen removal efficiency was 77.70 ± 1.14, 87.10 ± 0.56, 86.40 ± 0.59, and 89.30 ± 0.53% under applied voltages of 0.4, 0.7, 1.0, and 1.3 V, respectively. All values were significantly higher than the control group (62.86 ± 2.06%). HNADB had the highest abundance among the 17 detected genera related to nitrogen metabolism. Facultative denitrifying bacteria, Pseudoxanthomonas, along with key bacteria of HNADB, such as Flavobacterium, constructed a shortcut simultaneous nitrification–denitrification (SND) process. Poisson analysis and redundancy analysis (RDA) showed that the applied voltage improved the denitrification efficiency by changing the microbial community structure, reducing the abundance of heterotrophic bacteria, and increasing the unit abundance of key functional genes so that less organics were required for the denitrification process. The increased nitrogen removal efficiency in the experimental group was mainly related to simultaneous nitrification–denitrification process and cooperation of microbial communities in the anode and the cathode. This study highlighted the feasibility of CBM-EEB to enhance the HNAD reaction and the response of wastewater with a low C/N ratio to enhance the abundance of microbial bacteria and their functional gene abundance.
机译:当用高氨氮浓度和低碳氮比处理废水时,传统的生物反硝化过程具有低去除率和缺乏碳源的问题。基于生物电化学系统(BES),构建了一种新型碳布双极板多元化电加强生物反应器(CBM-EEB)系统。在该研究中,研究了在不同电压条件下使用CBM-EEB使用CBM-EEB的氮去除效率和富集功能细菌的富集。下一代测序的结果表明CBM-EEB包括异抗性硝化和有氧脱氮(HNAD),并以异养硝化的需氧硝化细菌(HNADB)为主。确认施加的电压具有调节微生物群落结构和丰度功能基因的能力,从而进一步提高了系统的氮去除效率。在0.4,0.7,1.0和1.3V的施加电压下,总氮去除效率为77.70±1.14,86.10±0.56,86.40±0.59和89.30±0.53%。所有值明显高于对照组(62.86±2.06%)。 HNADB与氮代谢相关的17个检测到的属性中具有最高的丰富。兼性脱氮细菌,假瘤瘤和HNADB的关键细菌,如黄芪,构建了捷径同时硝化 - 反硝化(SND)方法。泊松分析和冗余分析(RDA)表明,施加的电压通过改变微生物群落结构,降低异养细菌的丰度,并增加关键功能基因的单位丰度,以便脱硝过程所需的单位丰富的抵抗效率。实验组的氮去除效率提高主要是与阳极和阴极中微生物群的同时硝化反硝化过程和合作有关。该研究强调了CBM-EEB的可行性,增强了HNAD反应,并具有低C / N比的废水响应,以增强微生物细菌的丰度及其功能基因丰富。

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