环境卫生工程 ›› 2023, Vol. 31 ›› Issue (1): 74-80.doi: 10.19841/j.cnki.hjwsgc.2023.01.012

• 城乡生活垃圾填埋与二次污染控制 • 上一篇    下一篇

微氧曝气工艺处理垃圾渗滤液小试研究

马 壮, 陈增丰, 胡 健,潘奥栋,李馨予, 吴伟祥   

  1. 1.浙江传超环保科技有限公司; 2.浙江大学 环境与资源学院 环境污染防治研究所
  • 出版日期:2023-03-01 发布日期:2023-03-01

Pilot-Scale Research of Micro-Oxygen Aeration Process for Landfill Leachate Treatment

MA Zhuang, CHEN Zengfeng, HU Jian, PAN Aodong, LI Xinyu, WU Weixiang   

  1. 1. Zhejiang Transper Environment Protection Technology Co. Ltd.; 2. Institute of Environmental Pollution Control, College of Environmental & Resource Science, Zhejiang University
  • Online:2023-03-01 Published:2023-03-01

摘要: 基于短程硝化反硝化技术,采用AO4微氧曝气生物反应器处理垃圾填埋场的渗滤液,考察了反应器的脱氮性能,并通过qPCR和高通量测序手段深入探究了反应器的脱氮原理。结果表明:微氧曝气单元DO浓度控制在0~0.60 mg/L,亚硝化率可达到90%以上,系统CODCr、[NH+4]-N和TN的平均去除率分别为85%、99%和87%。微生物学机理探究表明:AO4微氧曝气系统中各单元功能基因丰度差异较大而群落结构差异较小。nirS功能基因丰度在各单元占绝对优势且远高于其他功能基因。在硝化过程中以氨氧化菌AOB功能基因为主,NOB功能基因主导的亚硝酸盐氧化过程受到一定程度的抑制。Bacteroidetes(拟杆菌门)的相对丰度与类似报道中常规好氧段拟杆菌门的相对丰度比较低,说明微氧曝气系统虽然脱氮效率高但是对有机物的代谢能力较差。研究中检测到10种反硝化菌属,但是受垃圾渗滤液中高盐分的影响,主要依靠Thauera菌属实现系统内的反硝化脱氮。

关键词: 垃圾渗滤液, 微氧曝气, 短程硝化反硝化, 同步硝化反硝化

Abstract: Based on the shortcut nitrification-denitrification technology, the AO4 micro-oxygen aeration bioreactor was adopted to treat the landfill leachate. The denitrification performance of the bioreactor was investigated, and the denitrification principle of the bioreactor was further explored by qPCR and Illumina MiSeq sequencing. The results showed that when the DO concentration of the micro-oxygen aeration unit was controlled in the range of 0~0.60 mg/L, the nitrification rate could reach more than 90%. The average removal rates of CODCr, [NH+4]-N and TN were 85%, 99% and 87%, respectively. The research on the mechanism of microbiology suggested that the abundance of functional genes of each unit in AO4 micro-oxygen aeration system was significant while the microbial community structure was little. The abundance of nirS functional genes in each unit was absolutely dominant and counted more than any other functional genes. In the nitrification process, the AOB functional genes of ammonia oxidizing bacteria were dominant, while the nitrite oxidation process dominated by NOB functional genes was inhibited to a certain extent. The relative abundance of Bacteroidetes was lower than that of the conventional aerobic segment reported in similar reports, which indicated that although the micro-oxygen aeration system had high nitrogen removal efficiency, but it had poor metabolic ability of organic matter. Ten denitrifying bacteria genera were detected in the study, but Thauera bacteria were mainly used to achieve denitrifying nitrogen removal in the system due to the high salinity in landfill leachate.

Key words: landfill leachate, micro-oxygen aeration, shortcut nitrification-denitrification, simultaneous nitrification and denitrification

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!
版权所有 © 天津市城市管理研究中心
津ICP备2022007900号-1   津公网安备 12010302000952号   中央网信办违法和不良信息举报中心
地址:天津市河西区围堤道107号    邮政编码: 300201
电话: 022-28365069 传真: 022-28365080 E-mail: csglwyjs10@tj.gov.cn
本系统由北京玛格泰克科技发展有限公司设计开发