首页> 外文期刊>Environmental toxicology and chemistry >MULTIPLE MECHANISMS CONTRIBUTE TO THE BIODEGRADATION OF BENZO[a]PYRENE BY PETROLEUM-DERIVED MULTICOMPONENT NONAQUEOUS-PHASE LIQUIDS
【24h】

MULTIPLE MECHANISMS CONTRIBUTE TO THE BIODEGRADATION OF BENZO[a]PYRENE BY PETROLEUM-DERIVED MULTICOMPONENT NONAQUEOUS-PHASE LIQUIDS

机译:石油衍生的多组分非均相液体生物降解苯并[a] P的多种机理

获取原文
获取原文并翻译 | 示例
           

摘要

The presence of multicomponent nonaqueous-phase liquids (NAPLs) on contaminated sites critically alters the biodeg-radation susceptibility of many target pollutants, including poly cyclic aromatic hydrocarbons. This study investigated the effects of petroleum-derived multicomponent NAPLs on biodegradation of benzo[a]pyrene by a bacterial consortium in liquid culture. When high-boiling point diesel fuel distillate (HBD)-NAPL was added to liquid culture, the consortium initiated benzo[a]pyrene mineralization after a lag period of several days. This lag period was not observed in the mineralization of phenanthrenc, anthracene, and chrysene by the same consortium with HBD. Nonaqueous-phase liquids added to cultures pregrown before experimentation largely affected the extent of benzo[a]pyrene mineralization and the duration of lag period in subsequent experiments, suggesting that NAPL presence was important for maintaining the efficiency of the mineralizing consortium. Experiments using further fractionated oil components suggested that stimulation of benzo[a]pyrene mineralization by NAPLs was fraction dependent; an alkylated aromatic fraction was more effective than aromatic and aliphatic fractions. The effect of NAPL on benzo[a]pyrene biodegradation was determined to be multimechanistic; that is, NAPL acted as a cosolvent for polycyclic aromatic hydrocarbon dissolution, as a substrate to induce cometabolic degradative pathways, and as an agent to formulate the effective microbial consortium. Data suggest that the third mechanism was of particular importance for rapid benzo[a]pyrene mineralization.
机译:污染场所中多组分非水相液体(NAPL)的存在严重改变了包括多环芳烃在内的许多目标污染物的生物辐射敏感性。这项研究调查了石油衍生的多组分NAPL对细菌财团在液体培养物中对苯并[a] bio的生物降解的影响。当将高沸点柴油馏分(HBD)-NAPL添加到液体培养物中时,财团在几天的滞后后引发了苯并[a] py的矿化。与HBD相同的财团在菲,蒽和蒽的矿化中未观察到该滞后期。在实验之前预先添加到培养物中的非水相液体在很大程度上影响了苯并[a] py的矿化程度和后续实验的滞后时间,这表明NAPL的存在对于维持矿化财团的效率非常重要。使用其他分馏油组分的实验表明,NAPL对苯并[a] mineral矿化的刺激作用与馏分有关。烷基化的芳族馏分比芳族和脂族馏分更有效。 NAPL对苯并[a] py生物降解的影响被认为是多机理的。就是说,NAPL充当多环芳烃溶解的助溶剂,是诱导代谢分解途径的底物,并且是配制有效微生物联盟的媒介。数据表明,第三种机制对于快速苯并[a] py的矿化特别重要。

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