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• 研究报告 • 上一篇    下一篇

河水高浓度有机污染降解菌分离、鉴定及降解特性

朱健1, 2,王平1, 2**,李捍东3,雷明婧1   

  1. (1中南林业科技大学环境科学与工程研究中心, 长沙 410004; 2南方林业生态应用技术国家工程实验室, 长沙 410004; 3中国环境科学研究院, 北京 100012)
  • 出版日期:2013-05-10 发布日期:2013-05-10

Isolation, identification, and degradation characteristics of bacterial strains in a high concentration organic pollutants-contaminated river water.

ZHU Jian1,2, WANG Ping1,2**, LI Han-dong3, LEI Ming-jing1   

  1. (1Institute of Environmental Science and Engineering Research, Central South University of Forestry & Technology, Changsha 410004, China; 2National Engineering Laboratory for Applied Technology of Forestry & Ecology in South China, Changsha 410004, China; 3Chinese Research Academy of Environmental Sciences, Beijing 100012, China)
  • Online:2013-05-10 Published:2013-05-10

摘要: 为了恢复遭受严重有机污染北方季节性河流自净能力,以河北某典型黑臭河流为研究对象,采集其河道底泥和水样,采用乳酸菌、酵母菌、放线菌和硝化细菌专性培养基对底泥中的微生物进行富集、分离、纯化,获取了15株有机污染物降解菌,对其中的6株优势菌采用脂肪酸谱图分析进行了鉴定,这6株菌最终鉴定为黄杆菌属(Flavobacterium)、微球菌属(Micrococcus)、乳杆菌属(Lactobacillus)、小单孢菌属(Micromonospora)、假丝酵母菌(Candida)、硝化球菌属(Nitrococcus)。为了提高菌株的降解与适应能力,采用定向富集液进行菌群复配,得到复合菌,复配试验表明,菌群最佳配比为乳酸菌1.0%、酵母菌0.5%、放线菌2.0%、硝化细菌2.0%。复合菌培养研究发现,复合菌最佳生长条件为pH 7.0,温度35 ℃,以葡萄糖为最佳碳源、需要少量Fe2+、Mg2+、Ca2+等无机盐。污染物降解试验表明,当pH、温度、菌量、转速分别为8、35 ℃、0.5%、80 r·min-1时,复合菌对污染物的降解效果最好,CODcr、NH3-N和TP去除率分别达到78%、59%和77%。

关键词: 旱作区, 沟垄二元覆盖技术

Abstract: In order to restore the self-purification capability of the northern seasonal river seriously contaminated by organic pollutants, a typical black-odor river in Hebei Province of North China was taken as the study object, its sediments and water samples were collected, and the culture media specifically for lactobacillus, yeast, actinomycetes, and nitrobacteria were adopted to enrich, isolate, and identify the microbes in the samples. A total of 15 organic pollutants-degrading bacteria strains were isolated, and 6 dominant bacterial isolates of them were identified by fatty acids map analysis, which were Flavobacterium, Micrococcus, Lactobacillus, Micromonospora, Candida, and Nitrococcus. To improve the adaptation and degradation capabilities of the isolates, a directional enrichment solution was adopted to compound the isolates, and the compound bacteria were obtained. The results of the optimization experiment showed that the optimal proportions of the compound bacteria were 0.5% of yeast, 1.0% of lactobacillus, 2.0% of actinomycetes, and 2.0% of nitrobacteria, and the most appropriate growth conditions of the compound bacteria were pH 7.0, temperature 35 ℃, carbon source glucose, and small amounts of Fe2+, Mg2+, and Ca2+. The degradation experiment indicated that when the pH value was 8.0, temperature was 35 ℃, inoculation amount was 0.5%, and rotation rate was 80 r·min-1, the compound bacteria performed best in degrading organic pollutants, with the removal rates of CODcr, NH3-N, and TP reached 78%, 59%, and 77%, respectively.

Key words: dry farming regions, dual-mulching of ridges and furrows.