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Linking desorption kinetics to phenanthrene biodegradation in soil

机译:将解吸动力学与土壤中的菲生物降解联系起来

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The desorption of polycyclic aromatic hydrocarbons (PAHs) often exhibits a biphasic profile similar to that observed for biodegradation whereby an initial rapid phase of degradation or desorption is followed by a phase of much slower transformation or release. Most investigations to-date have utilised a polymeric sorbent, such as Tenax, to characterise desorption, which is methodologically unsuitable for the analysis of soil. In this study, desorption kinetics of ~(14)C-phenanthrene were measured by consecutive extraction using aqueous solutions of hydroxypropyl-β-cyclodextrin (HPCD). The data indicate that the fraction extracted after 24 h generally approximated the linearly sorbed, rapidly desorbing fraction (F_(rap)), calculated using a three-compartment model. A good linear correlation between phenanthrene mineralised and F_(rap) was observed (r~2 = 0.89; gradient = 0.85; intercept = 8.20). Hence HPCD extraction (24 h) and first-order three-compartment modelling appear to provide an operationally straightforward tool for estimating mass-transfer limited biodegradation in soil.
机译:多环芳烃(PAH)的解吸通常表现出与生物降解相似的两相曲线,即降解或解吸的初始快速阶段之后是转化或释放慢得多的阶段。迄今为止,大多数研究已利用聚合物吸附剂(例如Tenax)表征解吸,这在方法上不适合用于土壤分析。在这项研究中,〜(14)C-菲的解吸动力学通过使用羟丙基-β-环糊精(HPCD)的水溶液连续萃取来测量。数据表明,在24小时后提取的馏分通常近似于使用三室模型计算的线性吸附,快速解吸馏分(F_(rap))。观察到菲与F_(rap)之间具有良好的线性相关性(r〜2 = 0.89;梯度= 0.85;截距= 8.20)。因此,HPCD萃取(24小时)和一阶三室模型似乎为估算土壤中传质受限的生物降解提供了一种操作简单的工具。

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