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Accumulation and biodegradation of phenanthrene and fluoranthene by the algae enriched from a mangrove aquatic ecosystem

机译:红树林水生生态系统富集的藻类对菲和荧蒽的积累和生物降解

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This study focused on the accumulation and biodegradation of two typical polycyclic aromatic hydrocarbons (PAHs), phenanthrene (PHE) and fluoranthene (FLA), by the diatoms enriched from a mangrove aquatic ecosystem in the Jiulong River estuary, China. After separation, purification and culture, Skeleto-nema costatum (Greville) Cleve and Nitzschia sp. were exposed to different concentrations of PHE, FLA, and a mixture of the two. The results showed that the tolerance of S. costatum to PHE and FLA was greater than that of Nitzschia sp., and that the toxic effect of FLA on S. costatum and Nitzschia sp. was higher than that of PHE. The microalgal species S. costatum and Nitzschia sp. were capable of accumulating and degrading the two typical PAHs simultaneously. The accumulation and degradation abilities of Nitzschia sp. were higher than those of S. costatum. Degradation of FLA by the two algal species was slower, indicating that FLA was a more recalcitrant PAH compound. The microalgal species also showed comparable or higher efficiency in the removal of the PHE-FLA mixture than PHE or FLA singly, suggesting that the presence of one PAH stimulated the degradation of the other.
机译:这项研究的重点是中国九龙江河口红树林水生生态系统中富集的硅藻对两种典型的多环芳烃(PAH),菲(PHE)和荧蒽(FLA)的积累和生物降解作用。分离,纯化和培养后,分离出Skeleto-nema costatum(Greville)Cleve和Nitzschia sp。分别暴露于不同浓度的PHE,FLA和两者的混合物中。结果表明,肋骨链球菌对PHE和FLA的耐受性均高于尼茨菌属(Nitzschia sp。),且FLA对肋骨链球菌(S.costatum)和尼兹菌属(Nitzschia sp。)高于PHE。微藻种S.costatum和Nitzschia sp。能够同时累积和降解两种典型的PAH。 Nitzschia sp。的积累和降解能力。高于S.costatum。两种藻类对FLA的降解速度较慢,表明FLA是更难降解的PAH化合物。微藻物种在去除PHE-FLA混合物方面也显示出与PHE或FLA相当或更高的效率,这表明一种PAH的存在会刺激另一种PAH的降解。

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