Affiliation:
1. 1Department of Environment, Research and Development, Analytical Concept Ltd, Elelenwo, Rivers State, Nigeria .
2. 2Department of Biology, Faculty of Science, Federal University Otuoke, Bayelsa State, Nigeria .
Abstract
The environmental menace caused by hydrocarbon releasing activities on water bodies have remained a cause for great concern. Such activities are accompanied by the release of highly toxic and carcinogenic polycyclic aromatic hydrocarbons (PAH), which are easily biomagnified across the food chain, ultimately aggravating adverse health conditions in human. This study was aimed at identifying the most important environmental contributors of PAHs in sediments of the Imiringi river. Owing to the activities of oil facilities among other anthropogenic influences, water bodies are inundated with hydrocarbon pollutants which settle within river bed sediments, thereby, playing an important role in the redistribution of contaminants. The applied diagnostic ratios (Phenanthrene/Anthracene, Fluorene/Fluorene + Pyrene, Fluoranthene/Fluoranthene + Pyrene, pyrogenic index and total index) revealed the presence of mixed source of PAHs (pyrogenic and petrogenic). PAH concentrations ranged from <0.01 to 3,965.4 µg/kg with most detected compounds exceeding regulatory limits. The high molecular mass PAHs (4 - 6 ring HPAHs) represents the primary source showing 94.29% distribution, while the low molecular mass PAHs (2 - 3 ring LPAHs) recorded trace concentrations of about 5.71% of total PAHs. Principal component analysis (PCA) revealed Indeno(1,2,3-cd)pyrene and Dibenz(a,h)anthracene as principal PAH components in the environment. In addition, Pearson correlation showed Benzo(k)fluoranthene and Benzo(b)fluoranthene as the most positively correlating PAH species in sediment. Overall, the midstream section of the river was relatively more polluted than the up and down-river locations. Most notably, HPAHs recorded higher concentrations than the LPAHs. This may be due to intensive agricultural practices such as bush incineration, while waste dumps along the river bank remain tangible pyrogenic PAH contributors. On the other hand, trace amounts of observed petrogenic PAHs in some locations are possibly spill-over’s from oil bunkering activities and infiltrations from nearby oil installations.
Publisher
Enviro Research Publishers
Subject
General Environmental Science
Reference46 articles.
1. 1. Ordinioha B, Brisibe S. The human health implications of crude oil spills in the Niger Delta, Nigeria: an interpretation of published studies. Nigerian medical journal: journal of the Nigeria Medical Association 2013; 54(1)10. doi: 10.4103/0300-1652.108887.
2. 2. Inengite A. K, Oforka N. C, Osuji L. C. Source identification of polycyclic aromatic hydrocarbons in sediments of a creek around a flow station. Int J. Environ. Sci. Technol 2013; 10:519-532. DOI: 10.1007/s13762-013-0177-4.
3. 3. Aigberua A. O, Ekubo A. T, Inengite A. K, Izah S. C. Evaluation of total hydrocarbon content and polycyclic aromatic hydrocarbon in an oil spill contaminated soil in Rumuolukwu community in Niger Delta. J. Environ. Treat. Tech 2016; 4(4)130-142.
4. 4. Aigberua A, Tarawou T, Abasi C. Spatial and seasonal assessment of heavy metals in surface waters of the Middleton River in the Niger Delta, Nigeria. International Journal of Natural Resource Ecology and Management 2017; 2(5)94-98. DOI: 10.11648/j.ijnrem.20170205.12.
5. 5. Moslen M, Aigberua A. Heavy metals and hydrocarbon contamination of surface water in Azuabie creek within Bonny estuary, Nigeria. J. Appl. Sci. Environ. Manage 2018; 22(7)1083-88. https://dx.doi.org/10.4314/jasem.v22i7.15.
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