首页> 外文期刊>Science of the total environment >Bioremediation Of Diesel Oil In A Co-contaminated Soil By Bioaugmentation With A Microbial Formula Tailored With Native Strains Selected For Heavy Metals Resistance
【24h】

Bioremediation Of Diesel Oil In A Co-contaminated Soil By Bioaugmentation With A Microbial Formula Tailored With Native Strains Selected For Heavy Metals Resistance

机译:通过针对特定重金属抗性选择的天然菌株量身定制的微生物配方,通过生物强化对共污染土壤中的柴油进行生物修复

获取原文
获取原文并翻译 | 示例
           

摘要

The aim of the work is to assess the feasibility of bioremediation of a soil, containing heavy metals and spiked with diesel oil (DO), through a bioaugmentation strategy based on the use of a microbial formula tailored with selected native strains. The soil originated from the metallurgic area of Bagnoli (Naples, Italy). The formula, named ENEA-LAM, combines ten bacterial strains selected for multiple resistance to heavy metals among the native microbial community. The biodegradation process of diesel oil was assessed in biometer flasks by monitoring the following parameters: DO composition by GC-MS, CO_2 evolution rate, microbial load and composition of the community by T-RFLP, physiological profile in Biolog~R ECOplates and ecotoxicity of the system. The application of this microbial formula allowed to obtain, in the presence of heavy metals, the complete degradation of n-C_(12-20). the total disappearance of phenantrene, a 60% reduction of isoprenoids and an overall reduction of about 75% of the total diesel hydrocarbons in 42 days. Concurrently with the increase of metabolic activity at community level and the microbial load, the gradual abatement of the ecotoxicity was observed. The T-RFLP analysis highlighted that most of the ENEA-LAM strains survived and some minor native strains, undetectable in the soil at the beginning of the experiment, developed. Such a bioaugmentation approach allows the newly established microbial community to strike a balance between the introduced and the naturally present microorganisms. The results indicate that the use of a tailored microbial formula may efficiently facilitate and speed up the bioremediation of matrices co-contaminated with hydrocarbons and heavy metals. The study represents the first step for the scale up of the system and should be verified at a larger scale. In this view, this bioaugmentation strategy may contribute to overcome a critical bottleneck of the bioremediation technology.
机译:这项工作的目的是通过基于针对特定本地菌株量身定制的微生物配方的生物强化策略,评估含有重金属和掺有柴油(DO)的土壤的生物修复可行性。土壤起源于巴格诺利(意大利那不勒斯)的冶金区。该配方名为ENEA-LAM,结合了十种细菌菌株,这些菌株被选为对本地微生物群落具有多重抗重金属的能力。通过监测以下参数,评估了生物量瓶中柴油的生物降解过程:GC-MS的溶解氧组成,CO_2释放速率,T-RFLP的微生物载量和群落组成,Biolog〜R ECOplates的生理特性和生物毒性。系统。该微生物配方的应用使得在重金属存在下可以获得n-C_(12-20)的完全降解。菲在42天之内消失了,类异戊二烯减少了60%,总体减少了柴油总量的75%。同时,随着社区一级代谢活动的增加和微生物负荷的增加,生态毒性得到了逐步减轻。 T-RFLP分析表明,大多数ENEA-LAM菌株都可以存活,并且开发了一些较小的天然菌株,这些菌株在实验开始时就无法在土壤中检测到。这种生物强化方法允许新近建立的微生物群落在引入的微生物和天然存在的微生物之间取得平衡。结果表明,使用量身定制的微生物配方可以有效地促进和加快与烃和重金属共同污染的基质的生物修复。该研究代表了系统规模扩大的第一步,应在更大范围内进行验证。根据这种观点,这种生物强化策略可能有助于克服生物修复技术的关键瓶颈。

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