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Simultaneous monitoring method of polycyclic aromatic hydrocarbons and persistent organic pollutants in the atmosphere using activated carbon fiber filter paper. | LitMetric

AI Article Synopsis

  • The study utilized activated carbon fiber filter paper (ACFP) for simultaneously monitoring PAHs and POPs in the atmosphere, employing the pressurized liquid extraction (PLE) method to extract these compounds.
  • Although toluene was effective in extracting most PAHs and POPs, some PAHs like benzo(a)pyrene were difficult to extract due to their adsorption on atmospheric particulate matter; hence, a quartz fiber paper (QFP) was incorporated for more efficient collection.
  • Monitoring in the Niigata area revealed that while many PAHs and some POPs were detected, certain POPs like aldrin and mirex were not, confirming the effectiveness of the modified collection method for tracking these compounds.

Article Abstract

In order to simultaneously monitor the concentrations of PAHs and POPs in the atmosphere, an activated carbon fiber filter paper (ACFP) was used as the adsorbing material in this study. The pressurized liquid extraction method (PLE method) was used to extract PAHs and POPs collected on the ACFP. Toluene was an effective solvent to extract them from ACFP using the PLE method, but some of PAHs, such as benzo(a)pyrene, benzo(g,h,i)perylene, dibenzo(a,h)anthracene and indeno(1,2,3-cd)pyrene, were hardly extracted. These PAHs were adsorbed on the particulate matter in the atmosphere. In general, these forms of particulate matter could be collected using a quartz fiber paper (QFP); these PAHs were efficiently extracted from the QFP using the PLE method with toluene. In this study, the collecting method of the PAHs was modified by using QFP overlapped in front of the ACFP. Atmospheric monitoring of PAHs and POPs in Niigata area was performed using this method, and most of the target compounds were detected. However, some of the POPs, such as aldrin, endrin, mirex, could not be detected. The POPs, such as hexachlorobenzene, alpha-hexachlorocyclohexane and chlordanes, and most of the PAHs were detected from all of the samples collected throughout the monitoring period. It was confirmed that these methods were effective to simultaneously monitor the concentrations of the PAHs and POPs in the atmosphere.

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http://dx.doi.org/10.2116/analsci.22.583DOI Listing

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