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Loading and removal of PAHs in a wastewater treatment plant in a separated sewer system.

Water research (2015-06-01)
Noriatsu Ozaki, Yoshihiro Takamura, Keisuke Kojima, Tomonori Kindaichi
ZUSAMMENFASSUNG

The loading and removal of polycyclic aromatic hydrocarbons (PAHs) were measured and estimated in a wastewater treatment plant in a separated sewer system in a suburban area of Japan. The influent 16 PAHs concentration was 219 ± 210 ng L(-1), whereas the effluent concentration was 43.5 ± 42.5 ng L(-1) (mean ± sd). No clear diurnal or weekly fluctuation was observed. However, evaluation of long-term changes revealed PAH fluctuations continuing for more than 1 week. Half of the PAHs (63%) were biologically or chemically transformed, or vaporized in the treatment plant, while the remainder were discharged with effluent (28%) and excess sludge (9%). Measurement of the per capita loading of the treatment plant revealed values of 142 ± 53 and 28 ± 11 μg person(-1)day(-1) (mean ± 95% confidence interval) for influent and effluent, respectively. Isomer ratio analysis revealed that the PAHs originated from a mixture of petroleum, petroleum combustion, and burning of biomass residues.

MATERIALIEN
Produktnummer
Marke
Produktbeschreibung

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Benzo[a]pyren, ≥96% (HPLC)
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Pyren, 98%
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Phenanthren, 98%
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Fluoren, 98%
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Anthracen, ReagentPlus®, 99%
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Acenaphthen, 99%
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Anthracen, reagent grade, 97%
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Pyren, puriss. p.a., for fluorescence, ≥99.0% (GC)
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Benzo[ghi]perylen, 98%
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Phenanthren-d10, 98 atom % D, 98% (CP)
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2-Fluorbiphenyl, 96%
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Fluoranthen, 98%
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Benz[a]anthracen, 99%
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Benzo[b]fluoranthen, 98%
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Acenaphthylin, 99%
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Phenanthren, sublimed grade, ≥99.5%
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Chrysen-d12, 98 atom % D
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Benzo[e]pyren, 98%
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Benzo[k]fluoranthen, for fluorescence, ≥99%
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Acenaphthen-d10, 99 atom % D
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Anthracen, suitable for scintillation, ≥99.0% (GC)
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Perylen-d12, 98 atom % D
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p-Terphenyl-d14, 98 atom % D, 98% (CP)
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Acenaphthylin, 75%
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Pyren, sublimed grade, 99%
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Anthracen, sublimed grade, ≥99%