Suppr超能文献

营养水平决定生物膜特性,进而影响微生物腐蚀和杀菌剂效果。

Nutrient Level Determines Biofilm Characteristics and Subsequent Impact on Microbial Corrosion and Biocide Effectiveness.

机构信息

Curtin Corrosion Centre, WA School of Mines: Minerals, Energy, and Chemical Engineering, Curtin University, Bentley, WA, Australia.

Woodside Energy Ltd., Perth, WA, Australia.

出版信息

Appl Environ Microbiol. 2020 Mar 18;86(7). doi: 10.1128/AEM.02885-19.

Abstract

The impact that nutrient level has on biofilm characteristics, biocide effectiveness, and the associated risk of microbiologically influenced corrosion (MIC) was assessed using multispecies biofilms from two different oilfield consortia. A range of microbiological, microscopy, and corrosion methods demonstrated that the continuous flow of nutrients for the microbial growth resulted in higher activity, thickness, and robustness of the biofilms formed on carbon steel, which induced greater localized corrosion compared to biofilms formed under batch, nutrient-depleted conditions. Despite of the differences in biofilm characteristics, biofilms displayed comparable susceptibilities to glutaraldehyde biocide, with similar log reductions and percent reductions of microorganisms under both nutrient conditions. Nevertheless, nutrient replenishment impacted the effectiveness of the biocide in controlling microbial populations; a higher concentration of cells survived the biocide treatment in biofilms formed under a continuous flow of nutrients. Complementary DNA-/RNA-based amplicon sequencing and bioinformatics analysis were used to discriminate the active within the total populations in biofilms established at the different nutrient conditions and allowed the identification of the microbial species that remained active despite nutrient depletion and biocide treatment. Detection of persistent active microorganisms after exposure to glutaraldehyde, regardless of biofilm structure, suggested the presence of microorganisms less susceptible to this biocide and highlighted the importance of monitoring active microbial species for the early detection of biocide resistance in oil production facilities. Microbiologically influenced corrosion (MIC) is a complex process that generates economic losses to the industry every year. Corrosion must be managed to prevent a loss of containment of produced fluids to the external environment. MIC management includes the identification of assets with higher MIC risk, which could be influenced by nutrient levels in the system. Assessing biofilms under different nutrient conditions is essential for understanding the impact of flow regime on microbial communities and the subsequent impact on microbial corrosion and on the effectiveness of biocide treatment. This investigation simulates closely oil production systems, which contain piping sections exposed to continuous flow and sections that remain stagnant for long periods. Therefore, the results reported here are useful for MIC management and prevention. Moreover, the complementary methodological approach applied in this investigation highlighted the importance of implementing RNA-based methods for better identification of active microorganisms that survive stress conditions in oil systems.

摘要

使用来自两个不同油田联合体的多物种生物膜来评估营养水平对生物膜特性、杀菌剂效果以及与微生物影响腐蚀(MIC)相关的风险的影响。一系列微生物学、显微镜和腐蚀方法表明,微生物生长的营养物质的连续流动导致在碳钢上形成的生物膜的活性、厚度和稳健性更高,与在批处理、营养耗尽条件下形成的生物膜相比,诱导更大的局部腐蚀。尽管生物膜特性存在差异,但生物膜对戊二醛杀菌剂表现出相似的敏感性,在两种营养条件下,微生物的对数减少和百分比减少相似。然而,营养物的补充会影响杀菌剂控制微生物种群的效果;在营养物质连续流动下形成的生物膜中,更多的细胞在杀菌剂处理后存活下来。互补的基于 cDNA-/RNA 的扩增子测序和生物信息学分析用于区分在不同营养条件下建立的生物膜中总种群内的活性,并且允许鉴定尽管营养耗尽和杀菌剂处理后仍然保持活性的微生物物种。即使在暴露于戊二醛后,无论生物膜结构如何,都能检测到持续活跃的微生物,这表明存在对这种杀菌剂不太敏感的微生物,并且强调了监测活跃微生物物种对于早期检测石油生产设施中杀菌剂抗性的重要性。微生物影响腐蚀(MIC)是一个复杂的过程,每年都会给工业带来经济损失。必须进行腐蚀管理以防止生产流体泄漏到外部环境中。MIC 管理包括识别具有更高 MIC 风险的资产,这些资产可能受到系统中营养水平的影响。在不同营养条件下评估生物膜对于了解流动状态对微生物群落的影响以及随后对微生物腐蚀和杀菌剂处理效果的影响至关重要。本研究紧密模拟了石油生产系统,其中包含暴露于连续流动的管道部分和长时间停滞的部分。因此,这里报告的结果对于 MIC 管理和预防非常有用。此外,本研究中应用的互补方法学方法强调了实施基于 RNA 的方法的重要性,以便更好地识别在石油系统中经受应激条件的活跃微生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d544/7082584/c1aed791ad05/AEM.02885-19-f0001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验