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Screen and Capacity of Predominant Strain for Toluene Biodegradation in Groundwater
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作者 Taboure Aboubacar 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第5期539-542,共4页
The soil nearby a gas station was collected, from which we isolated a series of strains by means of enrichment and screening technigues. The most effective strain for the degradation of toluene, i.e., JYZ0315 was scre... The soil nearby a gas station was collected, from which we isolated a series of strains by means of enrichment and screening technigues. The most effective strain for the degradation of toluene, i.e., JYZ0315 was screened by the further mutation of the above strains. The degradation capacity experiment was carried out in simulated groundwater. Under the optimal conditions, the degradation rate could reach 93.5%. During the extend application experiments with a percolation tank, the degradation of toluene reached 87.3% in 11 d and 95.2% in 15 d, which was close to that of the microenvironment, and this proves that JYZ0315 is one of the predominant strains to degrade toluene in groundwater. 展开更多
关键词 TOLUENE GROUNDWATER predominant strain of degradation
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Selection of the Bacteria Being Able to Degrade Kerosene and Study on the Growth Conditions of the Bacteria
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作者 LI Ping ZHUO Feng-ping +1 位作者 GAO Li-hong CAI Ming 《Meteorological and Environmental Research》 CAS 2012年第11期54-57,共4页
[Objective] The study aimed at selecting the predominant strains being able to degrade kerosene and studying its best growth conditions. [Method] Choosing kerosene as the only carbon source, we selected and separated ... [Objective] The study aimed at selecting the predominant strains being able to degrade kerosene and studying its best growth conditions. [Method] Choosing kerosene as the only carbon source, we selected and separated the predominant strains being able to degrade kerosene from the contaminated soil near petrochemical plants, and then optimized the grow conditions of the bacteria. [Result] The best conditions for the bacteria growth were determined as follows, that is, temperature was 30 ℃, pH=7, salinity was 2.5%, and the rotational speed of the thermostatic shake was 190 r/min. Under the optimal conditions, the degradation rate of kerosene by the bacteria cultured for three days reached 42.6%. [Conclusion] The research could provide scientific references for the restoration of polluted soil by kerosene. 展开更多
关键词 KEROSENE BIODEGRADATION predominant strains Growth conditions China
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