Polycyclic Aromatic Hydrocarbons Concentrations in Soils from Power Plant Stations in Universities in Port Harcourt, Rivers State, Niger Delta, Nigeria

O. Edori, E. S. Edori, Chizoba Theresa Wodi
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Abstract

Soil contamination as a result of human interferences with nature is a common occurrence all over the world. Soil samples were collected from three universities (Ignatius Ajuru University of Education (IAUE), University of Port Harcourt (UNIPORT) and the Rivers State University (RSU) in Port Harcourt, Rivers State. The soils were taken at the points where the different institutions generate electricity with diesel powered generators. The soil samples were collected from the surface to a dept of 30 cm and were put into tightly closed glass containers. They were transported to the laboratory and prepared by standard methods of extraction and purification. The extracts were analyzed with a gas chromatography – mass spectrophotometry instrument to obtain the various fractions of PAHs present in the samples. It was observed that all the 16 priorities PAHs were present in all the samples from the station. The total concentrations of PAHs showed that IAUE>UNIPORT>RSU with respective values of 18.18, 16.64 and 16.53 mg/Kg. Benz(a)anthracene was observed to be the most abundant PAH in all the stations with a value of 2.11±0.14, 2.01±0.51 and 2.10±0.57 mg/Kg for IAUE4>5>6 rings. The concentrations of carcinogenic and non-carcinogenic PAHs were almost in equal proportions in the soils examined. Therefore, the workers involved directly with the electrical generation on these campuses should adequately protected and informed on the consequences of contact with the soil and the gases that come out of the exhaust. Keywords: polycyclic aromatic hydrocarbons, soil, fingerprinting, power generating stations, pollution, human influence
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尼日利亚尼日尔三角洲河州哈科特港大学电厂土壤多环芳烃浓度
由于人类对自然的干扰而造成的土壤污染在世界各地都很常见。土壤样本采集自三所大学(Ignatius Ajuru教育大学(IAUE)、哈科特港大学(UNIPORT)和里弗斯州哈科特港的里弗斯州立大学(RSU)。土壤是在不同机构用柴油发电机发电的地方采集的。土壤样品从表面收集到30厘米的深度,并放入紧密封闭的玻璃容器中。它们被运送到实验室,并通过标准的提取和纯化方法进行制备。用气相色谱-质谱分光光度计对提取物进行分析,以获得样品中存在的PAHs的不同组分。据观察,所有16种优先考虑的多环芳烃都存在于该站的所有样本中。PAHs的总浓度显示IAUE>UNIPORT>RSU,分别为18.18、16.64和16.53mg/Kg。Benz(a)蒽是所有站点中最丰富的PAH,IAUE4>5>6环的PAH值分别为2.11±0.14、2.01±0.51和2.10±0.57mg/Kg。在所检查的土壤中,致癌和非致癌PAHs的浓度几乎相等。因此,直接参与这些校园发电的工人应该得到充分的保护,并了解接触土壤和废气的后果。关键词:多环芳烃、土壤、指纹图谱、发电站、污染、人类影响
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