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首页> 外文期刊>Journal of the air & waste management association >Biofiltration of gasoline and diesel aliphatic hydrocarbons
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Biofiltration of gasoline and diesel aliphatic hydrocarbons

机译:汽油和柴油脂肪烃的生物过滤

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The ability of a biofilm to switch between the mixtures of mostly aromatic and aliphatic hydrocarbons was investigated to assess biofiltration efficiency and potential substrate interactions. A switch from gasoline, which consisted of both aliphatic and aromatic hydrocarbons, to a mixture of volatile diesel n-alkanes resulted in a significant increase in biofiltration efficiency, despite the lack of readily biodegradable aromatic hydrocarbons in the diesel mixture. This improved biofilter performance was shown to be the result of the presence of larger size (C_9-C_(12)) linear alkanes in diesel, which turned out to be more degradable than their shorter-chain (C_6-C_8) homologues in gasoline. The evidence obtained from both biofiltration-based and independent microbiological tests indicated that the rate was limited by biochemical reactions, with the inhibition of shorter chain alkane biodegradation by their larger size homologues as corroborated by a significant substrate specialization along the biofilter bed. These observations were explained by the lack of specific enzymes designed for the oxidation of short-chain alkanes as opposed to their longer carbon chain homologues.
机译:研究了生物膜在大多数芳香族和脂肪族烃的混合物之间切换的能力,以评估生物过滤效率和潜在的底物相互作用。尽管柴油混合物中缺乏易于生物降解的芳香烃,但从由脂肪烃和芳香烃组成的汽油转换为挥发性柴油正构烷烃的混合物,生物过滤效率显着提高。研究表明,这种生物滤池性能的提高是由于柴油中存在较大尺寸(C_9-C_(12))直链烷烃的结果,而烷烃比其汽油中较短链(C_6-C_8)的同系物更易降解。从基于生物过滤的微生物学和独立的微生物学测试中获得的证据表明,该速率受到生化反应的限制,其较大尺寸的同系物抑制了较短链烷烃的生物降解,这被沿生物滤床的显着底物专门化所证实。这些观察结果是由于缺乏设计用于短链烷烃氧化的特异性酶,而不是其较长的碳链同系物。

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    Institute of Chemical Technology, Prague, Czech Republic,Department of Biotechnology, Institute of Chemical Technology, Prague 16628, Czech Republic;

    Institute of Chemical Technology, Prague, Czech Republic,University of North Dakota, Grand Forks, ND, USA;

    Institute of Chemical Technology, Prague, Czech Republic;

    University of North Dakota, Grand Forks, ND, USA;

    University of North Dakota, Grand Forks, ND, USA;

    Texas A&M University-Kingsville, Kingsville, TX, USA;

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