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Effects of multiple bacterial species and nutrient injection on phenanthrene transport and bacterial cell elution.

机译:多种细菌和营养物注入对菲转运和细菌细胞洗脱的影响。

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The objectives of this study were to investigate the effects of multiple bacterial species and nutrient injection on phenanthrene degradation, cell elution, and cell distribution within a column system. Three indigenous, phenanthrene degrading species, Actinobacter junii, Pseudamonas oleovorans, and Methylbacterium sp., were used. Characterization studies were conducted to determine the relative cell yield and cell hydrophobicity. Transport studies were conducted in a saturated column system. Results show single bacterial species produce relatively stable cell elution and phenanthrene biodegradation curves. In addition, it appears that cell density within the column may be dependent on cell hydrophobicity and possibly column carrying capacity. Conversely, phenanthrene degradation and cell elution was variable in the presence of multiple bacterial species. Results indicate that synergistic and antagonistic interactions occurred among the species. Injection of an alternative carbon source (R2B) enhanced phenanthrene degradation only in the single species column containing Actinobacter junii. It caused increased cell elution in Actinobacter junii and Pseudamonas oleovorans single species columns. No increase in degradation was found in multi-species columns injected with R2B. These studies illustrate that the dynamics of complex microbial communities should be considered when evaluating contaminant biodegradation and transport in subsurface systems. The findings presented here have important implications for representation of biodegradation in computer modeling and in the design of bioremediation strategies.
机译:这项研究的目的是调查多种细菌种类和养分注入对菲降解,细胞洗脱和柱系统内细胞分布的影响。使用了三种降解菲的本地物种,即 juninoactinobacter junii,油假单胞菌(Pseudamonas oleovorans) Methylbacterium sp 。进行表征研究以确定相对细胞产量和细胞疏水性。运输研究是在饱和色谱柱系统中进行的。结果显示单一细菌种类产生相对稳定的细胞洗脱和菲生物降解曲线。另外,似乎柱内的细胞密度可能取决于细胞疏水性以及可能取决于柱的承载能力。相反,在多种细菌存在下,菲的降解和细胞洗脱是可变的。结果表明,物种之间发生了协同和拮抗作用。注入替代碳源(R 2 B)仅在包含 juninoactinobacter junii 的单一物种色谱柱中提高了菲的降解。它导致 junino放线杆菌油酸假单胞菌单个物种柱的细胞洗脱增加。在注入R 2 B的多物种色谱柱中未发现降解增加。这些研究表明,在评估地下系统中污染物的生物降解和迁移时,应考虑复杂微生物群落的动力学。此处提出的发现对计算机模型中生物降解的表示以及生物修复策略的设计具有重要意义。

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