化工学报 ›› 2008, Vol. 59 ›› Issue (6): 1522-1530.

• 能源和环境工程 • 上一篇    下一篇

一株新的厌氧除磷功能菌株的鉴定与活性

周康群;刘晖;崔英德;孙彦富;邓金川   

  1. 仲恺农业技术学院环境科学与工程系
  • 出版日期:2008-06-05 发布日期:2008-06-05

Identification of a novel anaerobic dephosphorization bacterial strain and its activity in phosphate removal under anaerobic condition

ZHOU Kangqun; LIU Hui; CUI Yingde;SUN Yanfu; DENG Jinchuan   

  • Online:2008-06-05 Published:2008-06-05

摘要:

采用浓缩池污泥为种泥,在厌氧混合连续流反应装置内进行厌氧除磷产生气态磷化氢功能菌的富集。利用微生物分离、鉴定相结合手段,从细菌形态、生理生化指标、16S rDNA三方面确定了功能菌株的分类地位,利用静态厌氧反应瓶对其进行了活性研究。结果表明,该菌确定为一株新的异养型厌氧除磷菌,其与2006年报道的Pseudochrobactrum saccharolyticum菌的同源性高达98.7%。该菌适宜的碳源和氮源是葡萄糖+乙酸钠和蛋白胨+氯化铵复合成分,纤维素、硝酸盐不适合作该菌的碳源、氮源,有机磷的添加对菌活性有一定帮助,但效果并不明显。反应最佳初始pH值为6~7,最适宜的温度为30~35℃,当温度为4℃时微生物生长受到抑制,温度高于35℃时活性下降。培养中外加还原剂硫化物对厌氧生物除磷没有显著的作用。

关键词:

厌氧除磷, 厌氧除磷菌, 磷酸盐还原

Abstract:

This study was conducted by using the sludge from the concentration pond as an inoculum to enrich the functional bacteria which might reduce phosphate into PH3 in a continuous stirred flow incubating reactor.The classificational status of this functional bacterium was also studied in a static state reactor under anaerobic condition according to its morphological, physiological, biochemical properties, and the analysis of its 16S rDNA gene sequence.The results showed that this bacterium might be a novel heterotrophic dephosphorization bacterium under anaerobic condition.There was 98.7% homology of its 16S rDNA gene sequence to Pseudochrobactrum saccharolyticum.The optimal carbon and nitrogen sources for this bacterium were glucose and sodium acetate, and peptone and ammonium chloride, respectively.However, cellulose and nitrate was unsuitable as carbon and nitrogen sources.The addition of organic phosphate was helpful but not significant to the activity of this bacterium.The best initial pH value of the reaction was 6—7, and the optimum temperature range was 30—35℃.The growth of this bacterium was inhibited when the temperature was 4℃,and its activity decreased when the temperature was above 35℃.There was no significant effect on biological dephosphorization by means of addition of reducer-sufide while incubating in the reactor under anaerobic condition.

Key words:

厌氧除磷, 厌氧除磷菌, 磷酸盐还原