...
首页> 外文期刊>RSC Advances >The mutual influence between corrosion and the surrounding soil microbial communities of buried petroleum pipelines
【24h】

The mutual influence between corrosion and the surrounding soil microbial communities of buried petroleum pipelines

机译:地下石油管道腐蚀与周围土壤微生物群落的相互影响

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Buried petroleum pipeline corrosion and leaks cause inevitable changes in the microbial communities of the surrounding soils. In addition, soils with different microbial communities can make different contributions to buried pipeline corrosion. Three kinds of soil samples of buried petroleum pipelines under different corrosion and petroleum contamination conditions were collected from the Shengli Oilfield of China to investigate the mutual influence between corrosion and the microbial communities of the surrounding soil. The 16S rRNA gene high-throughput Illumina MiSeq sequencing was used to analyze the microbial communities of different surrounding soils. Electrochemical tests were performed for steel corrosion investigation. The results showed that the microbial diversity of the surrounding soils of corroded pipelines with/without petroleum contamination (O-soil and C-soil, respectively) decreased significantly as compared with that of the non-corroded and non-contaminated ones (NC-soil). The C-soil contained more abundant Balneolaceae ( Balneola , KSA1), Flavobacteriaceae ( Muricauda , Gramella ) and Desulfuromonadaceae ( Pelobacter , Geoalkalibacter ). The O-soil possessed a greater abundance of Halomonas , Pseudoalteromonas , Psychrobacter and Dietzia , which were reported to have a capacity for hydrocarbon degradation. Moreover, electrochemical measurements indicated that the microcosm of the C-soil and NC-soil promoted steel corrosion, while the C-soil community showed a slightly higher corrosion rate. However, the O-soil community mitigated the steel corrosion. These observations suggested that pipeline corrosion increased proportions of microorganisms, which are likely related to fermentation, sulfur respiration, iron respiration and manganese respiration in surrounding soils and enhanced the soil corrosivity, while petroleum contamination weakened the corrosion ability and promoted the growth of hydrocarbon-degrading organisms in the microbial community.
机译:地下石油管道的腐蚀和泄漏会引起周围土壤微生物群落的不可避免的变化。此外,微生物群落不同的土壤对地下管道腐蚀的贡献也不同。从胜利油田采集了三种不同腐蚀和石油污染条件下的地下石油管道土壤样品,研究了腐蚀与周围土壤微生物群落之间的相互影响。 16S rRNA基因高通量Illumina MiSeq测序用于分析周围不同土壤的微生物群落。进行了电化学测试以进行钢腐蚀研究。结果表明,与未腐蚀和未污染的管道(NC-土壤)相比,有/没有石油污染(分别为O-土壤和C-土壤)的腐蚀管道周围土壤的微生物多样性显着降低。 )。 C土中含有较丰富的鲍氏杆菌科(Balneola,KSA1),黄杆菌科(Muricauda,Gramella)和脱硫菌科(Pelobacter,Geoalkalibacter)。 O型土壤具有大量的Halomonas,Pseudoalteromonas,Psychrobacter和Dietzia,据报道它们具有碳氢化合物降解能力。此外,电化学测量表明,C土和NC土的缩影促进了钢的腐蚀,而C土群落显示出略高的腐蚀速率。但是,O土社区减轻了钢的腐蚀。这些发现表明,管道腐蚀增加了微生物的比例,这很可能与周围土壤中的发酵,硫呼吸,铁呼吸和锰呼吸有关,并增强了土壤的腐蚀性,而石油污染削弱了腐蚀能力,并促进了降解烃的生长。微生物群落中的生物。

著录项

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