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Tenax-GC Extraction Technique for Residual Polychlorinated Biphenyl and Polyaromatic Hydrocarbon Analysis in Biodegradation Assays

机译:Tenax-GC萃取技术用于残留多氯联苯和生物降解分析中的多芳烃分析

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摘要

A rapid Tenax-GC extraction technique has been evaluated for use in conjunction with aqueous biodegradation assays for polyaromatic hydrocarbons and polychlorinated biphenyls. The method was quantitatively efficient and reproducible for phenanthrene, but variable and not quantitative for Aroclor 1254 (polychlorinated biphenyls). Aqueous sample volumes and varying concentrations of organic matter influenced polychlorinated biphenyl and polyaromatic hydrocarbon extraction efficiency. Phenanthrene recovery was decreased by soil extract but unaffected by spent bacteriological culture medium. Both types of organic matter caused significant reduction of Aroclor 1254 recovery. Polyaromatic hydrocarbon and polychlorinated biphenyl biodegradation assays, performed with reservoir samples, supported the laboratory evaluation. The study demonstrated the utility of the Tenax-GC extraction technique for phenanthrene analysis in biodegradation assessment; however, Tenax-GC extraction was not appropriate for Aroclor 1254 biodegradation studies.
机译:已经评估了一种快速的Tenax-GC萃取技术,该技术可与多环芳烃和多氯联苯的水性生物降解分析结合使用。该方法在定量上对菲有效且可重现,但对于Aroclor 1254(多氯联苯)却是可变且非定量的。含水样品的体积和不同浓度的有机物影响多氯联苯和多芳烃的萃取效率。土壤提取物可降低菲的回收率,但不受用过的细菌培养基的影响。两种类型的有机物均导致Aroclor 1254回收率显着降低。对储层样品进行的多环芳烃和多氯联苯生物降解试验支持了实验室评估。该研究证明了Tenax-GC提取技术在生物降解评估中进行菲分析中的应用。但是,Tenax-GC提取不适用于Aroclor 1254生物降解研究。

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