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Univariate And Multivariate Characterization Of Heavy Fuel Oil Weathering And Biodegradation In Soil

机译:土壤中重油的风化和生物降解的单变量和多元表征

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Polycyclic aromatic compounds (PACs) of petrogenic origin are widespread contaminants of the environment. We investigated the weathering and biodegradation of fuel oil PACs in microcosms that contained natural soil or natural soil primed by adding bioremediated soil to a 2% concentration. In the primed soil, lag-phases were shorter, and biodegradation was more pronounced. To describe PAC degradation, changes in the relative distribution of PACs and changes in isomer ratios, that are specific for biodegradation, were determined by univariate and multivariate techniques. A multivariate approach based on normalized areas or isomer ratios, in combination with principal component analysis, provided the most detailed description of weathering and biodegradation. In particular, the sequence of degradation of PACs was more transparent when using the multivariate approach. We also identified new diagnostic ratios of dimethylphenanthrenes for use in the study of moderately and severely biodegraded samples.
机译:岩石成因的多环芳族化合物(PAC)是广泛的环境污染物。我们在微观范围内研究了燃料油PAC的风化和生物降解作用,其中包含天然土壤或通过添加2%浓度的生物修复土壤而引发的天然土壤。在灌注的土壤中,滞后期较短,生物降解更明显。为了描述PAC的降解,通过单变量和多变量技术确定了PAC相对分布的变化和对生物降解具有特异性的异构体比率的变化。基于归一化面积或异构体比率的多变量方法,结合主成分分析,提供了对风化和生物降解的最详细描述。特别是,使用多变量方法时,PAC的降解顺序更加透明。我们还确定了用于中度和重度生物降解样品研究的二甲基菲的新诊断率。

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