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1. 三峡大学Alan G.Mac Diarmid再生能源研究所
2. 武汉大学化学与分子科学学院
纸质出版日期:2007-06-01,
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[1]黄应平,方艳芬,杜小春,张艺,刘志洪.高效降解苯酚和苯胺菌株的选育[J].武汉大学学报(理学版),2007(06):748-752.
HUANG YINGPING1, FANG YANFEN1, DU XIAOCHUN1, et al. Selection of High Efficient Strain in Degradation of Phenol and Aniline. [J]. 2007, (6): 748-752.
[1]黄应平,方艳芬,杜小春,张艺,刘志洪.高效降解苯酚和苯胺菌株的选育[J].武汉大学学报(理学版),2007(06):748-752. DOI:
HUANG YINGPING1, FANG YANFEN1, DU XIAOCHUN1, et al. Selection of High Efficient Strain in Degradation of Phenol and Aniline. [J]. 2007, (6): 748-752. DOI:
从污水中通过选择性富集和驯化培养
分离得到两株分别以苯酚、苯胺为惟一碳源的菌株.经初步鉴定这两种菌株均为假单胞杆菌属(Pseudomonas sp.).通过对两菌株在不同温度、pH值以及相应苯酚、苯胺底物浓度下的生长和降解情况的研究
确定了最佳降解苯酚、苯胺的工艺条件为pH 7.0
温度30℃
好氧.当苯酚、苯胺底物浓度不超过1 000 mg/L时
两菌株对其去除率可达到95%以上.
Strains utilizing phenol and aniline as the sole carbon source were isolated from sewage by selectively screening
acclimatizing and separating
respectively
both of which were elementarily identified as Pseudomonas sp.The optimum degradation condition of both bacteria was studied: pH was 7.0
fine oxygen
and temperature was 30 ℃.When the concentration of substrates was below 1 000 mg/L
the removal rate of substrates was over 95%.
苯酚苯胺生物降解选育
phenolanilinebiodegradationbreeding
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