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Distribution and potential sources of polycyclic aromatic hydrocarbons in soils around coal-fired power plants in South Africa
Authors:Olumuyiwa O Okedeyi  Mathew M Nindi  Simiso Dube  O R Awofolu
Institution:1. Chemistry Department, University of South Africa, P. O. Box 392, UNISA, Pretoria, 0003, South Africa
2. Environmental Science Department, University of South Africa, Bag X6 Florida, 1710, Johannesburg, South Africa
Abstract:The distribution and potential sources of 15 polycyclic aromatic hydrocarbons (PAHs) in soils in the vicinity of three South African coal-fired power plants were determined by gas chromatography–mass spectrometry. PAH compound ratios such as phenanthrene/phenanthrene + anthracene (Phen/Phen + Anth) were used to provide reliable estimation of emission sources. The total PAH concentration in the soils around three power plants ranged from 9.73 to 61.24 μg g?1, a range above the Agency for Toxic Substances and Disease Registry levels of 1.0 μg g?1 for significantly contaminated site. Calculated values of Phen/Phen + Anth ratio were 0.48?±?0.08, 0.44?±?0.05, and 0.38?+?0.04 for Matla, Lethabo, and Rooiwal, respectively. Flouranthene/fluoranthene + pyrene (Flan/Flan + Pyr) were found to be 0.49?±?0.03 for Matla, 0.44?±?0.05 for Lethabo, and 0.53?±?0.08 for Rooiwal. Such values indicate a pyrolytic source of PAHs. Higher molecular weight PAHs (five to six rings) were predominant, suggesting coal combustion sources. A good correlation existed between most of the PAHs implying that these compounds were emitted from similar sources. The carcinogenic potency Ba]P equivalent concentration (Ba] Peq) at the three power plants ranged from 3.61 to 25.25 indicating a high carcinogenic burden. The highest (Ba] Peq) was found in samples collected around Matla power station. It can therefore be concluded that the soils were contaminated with PAHs originating from coal-fired power stations.
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