Assessment of Polycyclic Aromatic Hydrocarbon in Soils and Sediments in Onitsha area, Southeastern, Nigeria

Asowata Iyobosa.Timothy, Olatunji Akinade Shadrach
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Abstract

Polycyclic Aromatic Hydrocarbons (PAHs) are environmental pollutant that can impair environmental quality and health, and consequent ecological risk. The study was aimed at determining the concentration and environmental status of PAHs in the soils and sediments of Onitsha metropolis and identify their probable source(s). Sixty samples of soils (44) and sediments (16) were collected for the study. Extraction of organics was facilitated by infusing the samples with dichloromethane and subjected to ultrasonic agitation. The analyses of the PAHs were undertaken using gas chromatography/mass spectrometry (GC/MS).Thirteen PAHs were detected in soils and sediments exhibiting varying concentration across several sampling locations. The concentration range (µg/kg) of the 13 identified PAHs in soil and sediments were Fluorene 0.00 - 122.2and 1.7-31.1; Anthracene, 0.0 – 55.3and 1.7 - 46.0; Phenathrene 1.0 – 2045.8and 22.2 – 266.2; Fluoranthene, 1.0 – 483.7and 13.4 – 602.9; Pyrene, 3.7 – 533.4and 14.1 – 531.8; Benzo [k]fluoranthene 1.0 – 166.5; 4.0 – 163.5; Benzo[a]anthracene, 1.0 - 222.0; 5.6 – 298; Benzo[b]fluoranthene, 1.1 – 502.6 and 14.1 – 452.9; Dibenz[ah]anthracene 1.0 – 33.4 and 1.0 37 0; Chrysene, 1.0 – 426.4and 10.0 – 385.6; Benzo [a] pyrene 1.0 – 502.6and 12.9 – 514.9 Benzo[ghi]perylene, 1.0 – 557.8and 14.9 – 326.0; Indeno[123-cd]pyrene 1.0 – 412.2and 1.0 – 37.0, respectively The fractional concentration of PAHs and Total Organic Carbon (TOC) analysed using Principal Component Analyses revealed different partitioning of the TOC and PAHs in soils and sediments. This indicated distinct sourcing of the TOC and PAHs in the environmental media. Relatively higher concentrations of PAHs were found in environment characterized by combustion activities such as waste dump sites, Mechanic and Metal Works environments. Pyrogenic (combustion) activities were indicted as the main contributors of the PAHs to the soils and sediments. 
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尼日利亚东南部Onitsha地区土壤和沉积物中多环芳烃的评价
多环芳烃(PAHs)是一种危害环境质量和健康的环境污染物,具有生态风险。本研究旨在确定奥尼察市土壤和沉积物中多环芳烃的浓度和环境状况,并确定其可能的来源。该研究收集了60份土壤(44份)和沉积物(16份)样本。通过向样品中注入二氯甲烷并进行超声波搅拌,有利于有机物的提取。采用气相色谱/质谱(GC/MS)分析多环芳烃。在土壤和沉积物中检测到13种多环芳烃,在几个采样地点表现出不同的浓度。土壤和沉积物中13种检出的多环芳烃的浓度范围(µg/kg)分别为:芴0.00 ~ 122.2和1.7 ~ 31.1;蒽,0.0 ~ 55.3和1.7 ~ 46.0;苯1.0 - 2045.8和22.2 - 266.2;氟蒽,1.0 - 483.7和13.4 - 602.9;芘,3.7 - 533.4和14.1 - 531.8;苯并[k]荧蒽1.0 - 166.5;4.0 - 163.5;苯并[a]蒽,1.0 - 222.0;5.6 - 298;苯并[b]氟蒽,1.1 - 502.6和14.1 - 452.9;二苯并[ah]蒽1.0 - 33.4和1.0 37 0;Chrysene, 1.0 - 426.4和10.0 - 385.6;苯并[a]芘1.0 - 502.6和12.9 - 514.9苯并[i]苝1.0 - 557.8和14.9 - 326.0;多环芳烃(PAHs)和总有机碳(TOC)含量的主成分分析揭示了土壤和沉积物中TOC和PAHs的不同分配规律。这表明TOC和PAHs在环境介质中的来源不同。多环芳烃的浓度在以燃烧为特征的环境中较高,如垃圾场、机械和金属工厂环境。热原(燃烧)活动是土壤和沉积物中PAHs的主要来源。
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