首页> 外文会议>International Conference on Environmental Science and Information Application Technology >Study of Petroleum Hydrocarbons under Chemical-Biological Degradation in Contaminated Soils
【24h】

Study of Petroleum Hydrocarbons under Chemical-Biological Degradation in Contaminated Soils

机译:污染土壤化学生物降解下石油烃研究

获取原文

摘要

Microbial decontamination of petroleum-polluted soils has been recognized to be an efficient, economical and versatile alternative for physical or chemical treatments. In this study, different components of petroleum in contaminated soil were investigated under optimal environmental conditions which were determined by previous experiments. An aerobic bacteria with the ability to utilize both hydrocarbons and benzene as carbon sources was identified as Flavobacterium sp. based on morphological, physiological and biochemical tests. The results demonstrate a 39.88% removal rate for total petroleum hydrocarbons over a period of 27 days. Different fractions of the petroleum were observed to be degraded incongruently. The degradation rate declines with increasing alkane chain length (carbon number). It was found that the total degradation rate can be approximated by the degradation rate of the n-alkane with 23 carbon atoms. N-alkanes with carbon number lower than 23 were removed faster than the total hydrocarbon amount, and the reverse trend was observed for n-alkanes with carbon number higher than 23. Unlike n-alkanes, the degradation rate of total iso-alkanes can be simulated by that of with iso-alkanes with 19 carbon atoms. The benzene utilization studies with the bacteria species showed that it metabolizes benzene when benzene concentration is under 10 mg/L, concentrations over which turn out to be inhibitory. The optimal conditions for effective removal of benzene by this species appear to be 30degC, pH of 6.5-6.7, inoculum concentration of 10% (v/v).
机译:已经认识到石油污染土壤的微生物去污是一种有效,经济和多功能的物理或化学治疗方法。在这项研究中,在最佳的环境条件下研究了污染土壤中的石油中的不同组分,该方法由先前的实验确定。一种有氧细菌,具有利用烃和苯作为碳源的能力被鉴定为Flavobacterium sp。基于形态学,生理生化试验。结果表明,总石油烃的除去率39.88%在27天内。观察到石油的不同级分变为降低。随着烷烃链长度(碳数)的降解率下降。发现总降解率可以通过N-烷烃的降解速率与23个碳原子的降解速率近似。除了总烃量的速度下除去低于23的N-烷烃,对于碳数高于23的N-烷烃观察到反向趋势。与正烷烃不同,总烷烃的降解速率可以是由具有19个碳原子的异烷烃的用异烷烃模拟。苯利用细菌物种的利用研究表明,当苯浓度低于10mg / L时,它代谢苯,浓度为抑制。用该物种有效除去苯的最佳条件似乎是30degc,pH为6.5-6.7,接种浓度为10%(v / v)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号