Sequential accelerated solvent extraction of polycyclic aromatic hydrocarbons with different solvents: performance and implication

Journal of Environmental Quality
Xiao-xuan MaDiyun Chen

Abstract

Sixteen USEPA priority polycyclic aromatic hydrocarbons (PAHs) extracted by Soxhlet extraction (S-PAHs) with dichloromethane and routine accelerated solvent extraction (A-PAHs) with 1:1 toluene/methanol, respectively, were investigated in 24 soil samples from two cities in the center of the Pearl River Delta, South China. Polycyclic aromatic hydrocarbons, methylphenanthrene and perylene, in two soils, two sediments, and an immature oil shale were also sequentially extracted by accelerated solvent extraction (ASE) with each of four different organic solvents for three times. The A-PAHs' concentrations are 2.41 times the S-PAHs' concentrations. For sequential three ASEs, PAHs in the first extract account for 56 to 67% of their total concentrations in the sequential three extractions and toluene displays the best extraction performance among the four solvents. Diagnostic ratios of PAHs in Soxhlet extraction, routine ASE, and sequential ASE with each solvent for a given sample are very similar, suggesting their identical petrogenic and pyrogenic sources in the soils and sediments. But the PAH ratios for the shale have an obvious petrogenic origin. The perylene/5-ring PAH ratios indicate a diagenetic source, especially in the shale ...Continue Reading

References

Jan 5, 2002·Environmental Science & Technology·S B HawthorneR C Loehr
May 25, 2002·Environmental Science & Technology·Mohamad Pauzi ZakariaHidetoshi Kumata
Sep 25, 2002·Environmental Science & Technology·Jianzhong SongWeilin Huang
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Jul 7, 2007·Environmental Science & Technology·Yong RanEddy Zeng

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Citations

Oct 20, 2017·Current Cardiology Reports·Xiaochen LinSimin Liu

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