化工学报 ›› 2010, Vol. 61 ›› Issue (7): 1852-1858.

• 能源和环境工程 • 上一篇    下一篇

同步反硝化短程除硫功能菌群的变化及鉴定

孙彦富;刘晖;刘洁萍;周康群;崔英德   

  1. 仲恺农业工程学院环境科学与工程系
  • 出版日期:2010-07-05 发布日期:2010-07-05

Change and identification of functional bacteria in simultaneously denitrifying and short-cut sulfide removal process

SUN Yanfu;LIU Hui;LIU Jieping;ZHOU Kangqun;CUI Yingde   

  • Online:2010-07-05 Published:2010-07-05

摘要:

依据反硝化除硫理论,利用全混流反应器富集反硝化除硫菌,采用平板计数法和PCR-DGGE法对功能菌群进行跟踪和鉴定,并对分离纯化得到的单菌株SNB1进行鉴定。结果表明,反应器中细菌总量、除硫菌和反硝化菌分别增加了1.92×10、6.49×105和1.66×103倍。稳定运行时反应器内存在3种优势菌群。a菌群与Thauera sp. 的同源性高达99%,为反硝化菌;其包含的SNB1生理生化指标显示为一株兼性自养反硝化除硫菌,且与Thauera selenatis(同源性高达99. 0%)最相似;反硝化除硫菌的比例为49.3%,数量约为3.70×109 cfu•ml-1。b菌群与Desulfovibrio sp. 的同源性高于98%,为硫酸盐还原菌。c菌群和Rhodococcus sp. 的同源性高于94%,为反硝化菌。当S/N在0.007~0.386间变化时,除S2-始终被100%转化为S0外,还有大于46.47%的SO2-4-S被转化为S0;而NO-3和COD的去除率分别为72.3%~95.8%和9.8%~43.5%。

关键词:

短程除硫, 反硝化除硫菌, 功能菌群变化, PCR-DGGE

Abstract:

Based on the view about removal of sulfur by denitrifying,for which the bacteria was enriched in a continuous stirred reactor,and the functional bacteria was monitored and identified by plate count and PCR-DGGE methods. The single strain SNB1 obtained by isolation and purification of bacteria was also identified. In the reactor, the amount of bacteria for total,desulfurization and denitrifying increased by 1.92×10,6.49×105,1.66×103-fold. There are three dominant microorganisms in the reactor during stable operation. a,a flora and Thauera sp. homology up to 99.0%,and it is a kind of denitrifying bacteria. The physiological and biochemical characteristics of the SNB1 contained revealed that it is a kind of facultative autotrophic bacteria and has the 99.0% homology with Thauera selenatis. The ratio and amount of desulfurization bacteria are 49.3% and 3.70×109 cfu•ml-1.b,the homology of another flora with Desulfovibrio sp. is higher than 98%,it is sulphate-reducing bacteria. c,the homology of third flora with Rhodococcus sp. is higher than 94%,it is denitrifying bacteria. When S/N is in the range of 0.007—0.386,100% S2- and 46.47% SO2-4 are converted into S0. The removal efficiency of NO-3 and COD are 72.3%—95.8% and 9.8%—43.5%,respectively.

Key words:

短程除硫, 反硝化除硫菌, 功能菌群变化, PCR-DGGE