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南非迭普河河水及沉积物样本中多环芳烃的存在情况及概率风险评估

Occurrence and probabilistic risk assessment of PAHs in water and sediment samples of the Diep River, South Africa.

作者信息

Awe Adetunji A, Opeolu Beatrice O, Olatunji Olatunde S, Fatoki Olalekan S, Jackson Vanessa A, Snyman Reinette

机构信息

Department of Chemistry, Cape Peninsula University of Technology, Cape Town, South Africa.

Department of Environmental and Occupational Studies, Faculty of Applied Sciences, Cape Peninsula University of Technology, Cape Town, South Africa.

出版信息

Heliyon. 2020 Jun 30;6(6):e04306. doi: 10.1016/j.heliyon.2020.e04306. eCollection 2020 Jun.

Abstract

This study investigated the levels of polycyclic aromatic hydrocarbons (PAHs) in water and sediment samples of the Diep River freshwater system of Western Cape Province, South Africa. A solid-phase extraction - gas chromatography - flame ionisation detection (SPE-GC-FID) method was utilised to simultaneously determine the 16 United States Environmental Protection Agency (US EPA) listed priority PAHs in water and sediment samples. The seasonal averages of individual PAH detected at the studied sites, ranged between not detected (Nd) and 72.38 ± 9.58 μg/L in water samples and between Nd and 16.65 ± 2.63 μg/g in the corresponding sediment samples. The levels of PAHs measured in water and sediment samples were subjected to probabilistic risk assessment to predict the possibility of regulatory values being exceeded. The average percentage exceedence of 63.26 was obtained for PAHs in water samples of the Diep River, while the corresponding average percentage exceedence obtained for sediment sample was 63.71. Sufficient exposure of humans and aquatic organisms to the exceedance levels obtained, would cause adverse health effect.

摘要

本研究调查了南非西开普省迪普河淡水系统水和沉积物样本中的多环芳烃(PAHs)水平。采用固相萃取 - 气相色谱 - 火焰离子化检测(SPE-GC-FID)方法同时测定水和沉积物样本中美国环境保护局(US EPA)列出的16种优先PAHs。在所研究地点检测到的单个PAH的季节平均值,在水样中未检出(Nd)至72.38±9.58μg/L之间,在相应沉积物样本中为Nd至16.65±2.63μg/g之间。对水和沉积物样本中测量的PAHs水平进行概率风险评估,以预测超过监管值的可能性。迪普河水样中PAHs的平均超标百分比为63.26,而沉积物样本的相应平均超标百分比为63.71。人类和水生生物充分暴露于所获得的超标水平会导致不良健康影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f5b/7330494/91a2c1812332/gr1.jpg

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