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Combined experimental design and information theory for the optimization of supercritical fluid extraction of organic priority pollutants from sediment

机译:结合实验设计和信息论优化超临界流体萃取沉积物中有机优先污染物的方法

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摘要

Optimization of the supercritical extraction (SFE) of incurred n-alkanes, PAHs and PCBs from a marine sediment has been carried out by a central composite experimental design maximizing the content of extracted analytes and minimizing the information gain compared with Soxhlet extraction (MeOH:CH2Cl2). Distributions of individual compounds found in the SFE optimized by the information gain theory were closer to the Soxhlet results. Furthermore, only the n-alkanes exhibited concurrent concentration maxima and minimum information gain. PCBs and PAHs exhibited optima at different extraction conditions. (C) 1997 Elsevier Science B.V.
机译:通过中央复合实验设计,对海洋沉积物中产生的正构烷烃,多环芳烃和多氯联苯的超临界萃取(SFE)进行了优化,与索氏萃取(MeOH:CH2Cl2 )。通过信息增益理论优化的SFE中发现的单个化合物的分布更接近于索氏提取的结果。此外,仅正构烷烃同时表现出最大浓度和最小信息增益。多氯联苯和多环芳烃在不同提取条件下表现出最佳性能。 (C)1997年Elsevier Science B.V.

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