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Competitive metabolism of polycyclic aromatic hydrocarbon (PAH) mixtures in porous media biofilms

机译:多孔介质生物膜中多环芳烃(PAH)混合物的竞争性代谢

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Complex mixtures of polycyclic aromatic hydrocarbons and other organic compounds are usually present in contaminated sites. This may influence biodegradation patterns and changes in biofilm growth and development. Biodegradation studies of naphthalene, phenanthrene and pyrene were conducted in sole-substrate systems and in binary and tertiary mixtures to examine substrate interactions on biofilms in porous media systems. It was shown that phenanthrene and pyrene could not be degraded as sole carbon sources in the system, but binary systems of the 3- and 4-ring PAHs with acetate and naphthalene supplements stimulated their degradation, with up to 87.9% and 70.1% removal efficiencies respectively. However, in the tertiary systems the presence of phenanthrene inhibited pyrene degradation. Adsorption of PAHs to sand media was determined to be negligible. Biofilm growth, development and changes in composition were analyzed over time; these showed increases in both firmly and loosely attached viable biomass, as well as extracellular polymeric substance production that formed a complex matrix. Heterogeneous surface films and a variety of biological aggregate structures and growth patterns were observed by confocal microscopy.
机译:多环芳烃和其他有机化合物的复杂混合物通常存在于受污染的地点。这可能会影响生物降解模式以及生物膜生长和发育的变化。萘,菲和pyr的生物降解研究在单一底物系统以及二元和三元混合物中进行,以研究多孔介质系统中生物膜上的底物相互作用。结果表明,菲和pyr不能作为系统中唯一的碳源降解,但是三环和四环多环芳烃与乙酸盐和萘的二元体系刺激了它们的降解,去除率高达87.9%和70.1%。分别。然而,在第三系统中,菲的存在抑制了pyr的降解。经测定,PAHs在沙质介质上的吸附微不足道。随着时间的推移分析了生物膜的生长,发育和组成变化;这些显示出牢固和松散附着的可行生物量的增加,以及形成复杂基质的细胞外聚合物质的产生。共聚焦显微镜观察到异质表面膜和各种生物聚集结构和生长模式。

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