1,334
Views
2
CrossRef citations to date
0
Altmetric
ENVIRONMENTAL HEALTH

Oil spillage measures caused drastic reduction in total petroleum hydrocarbon levels in petroleum depot in Ibadan, Southwestern Nigeria

, & | (Reviewing editor)
Article: 1826744 | Received 01 Jun 2020, Accepted 11 Sep 2020, Published online: 09 Oct 2020

References

  • Abiodun, O. A., Omobola, O. O., & Anthony, I. O. (2017). Petroleum hydrocarbon profiles of water and sediment of Algoa bay, Eastern Cape, South Africa. International Journal of Environmental Research and Public Health, 14(1263), 1–19. DOI: 10.3390/ijerph14101263
  • Adeniji, A. O., Okoh, O. O., & Okoh, A. I. (2018). Analytical methods for polycyclic aromatic hydrocarbons and their global trend of distribution in water and sediment: A review. In M. E.-S. Abdul-Raouf Ed., Recent insights in petroleum science and engineering. ISBN:978-953-51-5321-4. https://doi.org/10.5772/intechopen.7116
  • Adeniji, A. O., Okoh, O. O., & Okoh, A. I. (2017). Analytical methods for the determination of the distribution of total petroleum hydrocarbons in the water and sediment of aquatic systems. A Rev J Chem, 5178937. https://doi.org/10.1155/2017/5178937
  • Adeniji, A. O., Okoh, O. O., & Okoh, A. I. (2019). Distribution pattern and health risk assessment of polycyclic aromatic hydrocarbons in the water and sediment of Algoa Bay, South Africa. Environmental Geochemistry and Health, 41(3), 1303–1320. https://doi.org/10.1007/s10653-018-0213-x
  • Adewuyi, G. O., Etchie, O. T., & Ademulegun, O. T. (2011). Determination of total petroleum hydrocarbons and heavy metals in surface water and sediment of Ubeji River, Warri, Nigeria. Biorem, Biodiv and Bioavail, 5(1), 46–51.
  • Adewuyi, G. O., & Olowu, R. A. (2012). Assessment of oil and grease, total petroleum hydrocarbons and some heavy metals in surface and ground water within the vicinity of NNPC oil depot in Apata, Ibadan metropolis, Nigeria. International Journal of Research and Reviews in Applied Sciences, 13(1), 166–174.
  • Agency for Toxic Substances & Disease Registry (ATSDR). (2018). Toxic substances portal – Total petroleum hydrocarbons (TPH). Toxicological profile for total petroleum hydrocarbons. Retrieved March 6, 2020, from https://www.atsdr.cdc.gov/ToxProfiles/TP.asp?id=424&tid=75#bookmark10
  • Agency for Toxic Substances and Disease Registry (ATSDR). (1999). Total Petroleum Hydrocarbons (TPH). U.S. Department of Health and Human Services, Public Health Service.
  • Ahmed, O. E., Ali, N. A., Mahmoud, S. A., & Doheim, M. M. (2014). Environmental assessment of contamination by petroleum hydrocarbons in the aquatic species of Suez Gulf. International Journal of Organic Chemistry, 3, 1–17.
  • Ahmed, O. E., Mahmoud, S. A., & Mousa, A. E. (2015). Aliphatic and Polyaromatic hydrocarbon pollution at the drainage basin of Suez oil refinery company. Current Science International, 4(1), 27–44.
  • Ajibare, A. O. (2014). Assessment of Physico-Chemical Parameters of Waters in Ilaje Local Government Area of Ondo State. Nigeria. International Journal of Fisheries and Aquatic Studies, 1(5), 84–92.
  • Akinola, J. O., Olawusi-Peters, O. O., & Akpambang, V. O. E. (2019). Ecological hazards of Total petroleum hydrocarbon in brackish water white Shrimp Nematopalaemon hastatus (AURIVILLUS 1898). Egyptian Journal of Aquatic Research, 45(3), 205–210. https://doi.org/10.1016/j.ejar.2019.07.004
  • American Standard Testing Method (ASTM). (2002). Standard guide for risk- based corrective action applied at petroleum release sites” E1739-95. ASTM Website (www.astm.org).
  • American Standard Testing Method (ASTM). (2004). Standard guide for risk- based corrective action” applied at petroleum release sites” E2081-00. ASTM Website (www.astm.org).
  • Aniefiok, E. I., Thomas, A. H., Clement, O. O., Ekpedeme, R. A., & Iniemem, J. I. (2018). Petroleum hydrocarbons contamination of surface water and groundwater in the Niger Delta Region of Nigeria. Journal of Environment Pollution and Human Health, 6(2), 51–61. https://doi.org/10.12691/jephh-6-2-2
  • APHA. (2005). Standard methods for the examination of water and wastewater. American public health association.
  • Bahadar, H., Mostafalou, S., & Abdollahi, M. (2014). Current understandings and perspectives on non –cancer health effects of benzene: A global concern. Toxicology and Applied Pharmacology, 276(2), 83–94. https://doi.org/10.1016/j.taap.2014.02.012
  • Brazkova, M., & Krastanov, A. (2013). Polycyclic aromatic hydrocarbons: Sources, effects and biodegradation. Hayчни Tpyдoвe Ha Pyceнcкия Унивepcитeт, Toм, 10(2), 1–5.
  • Chapman, D., Ed. (1996). Water quality assessments- a guide to use of biota, sediments and water in environmental monitoring (2nd ed). E&FN Spon
  • Imaobong, E.D. and Prince, J.N. (2016). Total Petroleum hydrocarbon concentration in surface water of Cross River Estuary, Niger Delta, Nigeria. Asian Journal of Environment & Ecology 1(2), 1–7. DOI: 10.9734/AJEE/2016/31102
  • Daniel, I. E., & Nna, P. J. (2016). Total petroleum hydrocarbon concentration in surface water of cross river Estuary, Niger Delta, Nigeria. Asian Journal of Environment & Ecology, 1(2), 1–7. https://doi.org/10.9734/AJEE/2016/31102
  • Das, N., & Chandran, P. (2011). Microbial degradation of petroleum hydrocarbon contaminants: An overview. Biotechnology Research International, 1–13.
  • Department of Petroleum Resources (DPR). (2002). EGASPIN soil/sediment target and intervention values for mineral oil (or TPH), environmental guidelines and standards for the petroleum industry in Nigeria. (Revised ed.). The Petroleum Regulatory Agency of Nigeria.
  • Edokpayi, J. N., Odiyo, J. O., Popoola, O. E., & Msagati, T. A. M. (2016). Determination and distribution of polycyclic aromatic hydrocarbons in rivers, sediments and wastewater effluents in Vhembe District, South Africa. International Journal of Environmental Research and Public Health, 13(4), 387. https://doi.org/10.3390/ijerph13040387
  • EU – European Communities, (1998). The quality of water intended for human consumption. Official Journal of the European Communities. Council Directive 98/83/EC. http://www.fsai.ie/uploadedfiles/Legislation/Food_Legislation_Links/Water/EU_Directive_98_83_EC.pdf
  • Gay, J., Shepherd, O., Thyden, M., & Whitman, M. (2010). The health effects of oil contamination: A compilation of research. Worcester Polytechnic Institute.
  • Guerriero, V., Vitale, S., Ciarcia, S., & Mazzoli, S. (2011). Improved statistical multi-scale analysis of fractured reservoir analogues. Tectonophysics (Elsevier), 504(1–4), 14–24. https://doi.org/10.1016/j.tecto.2011.01.003
  • Guo, W., He, M., Yang, Z., Lin, C., & Quan, X. (2011). Aliphatic and polycyclic aromatic hydrocarbons in the Xihe River, an urban river in China’s Shenyang city: Distribution and risk assessment. Journal of Hazardous Materials, 186(2–3), 1193–1199. https://doi.org/10.1016/j.jhazmat.2010.11.122
  • Gupta, N., Yadav, K. K., Kumar, V., & Singh, D. (2013). Assessment of physicochemical properties of Yamuna River in Agra City. International Journal of ChemTech Research, 5, 528–531.
  • Interstate Technology & Regulatory Council (ITRC). (2018). TPH risk evaluation at petroleum-contaminated sites. THPRisk-1. Interstate Technology & Regulatory Council, TPH Risk Evaluation Team. https://tphrisk-1.itrcweb.org
  • Kansas Department of Health and Environment (KDHE). (2015). Kansas method for the determination of mid-range hydrocarbons (MRH) and High Range Hydrocarbons (HRH). Kansas Department of Health and Environment (KDHE). Revision 1.0. Kansas.
  • Karyab, H., Yunesia, M., Mahvi, A. N., Ahmadkhaniha, R., Rastkari, N., & Nabizadeh, R. (2013). Polycyclic aromatic hydrocarbons in drinking water of Tehran, Iran. Journal of Environmental Health Science and Engineering, 11(1), 25. https://doi.org/10.1186/2052–336X-11-25
  • Keizer, P. D., & Gordon, D. C. (1973). Detection of trace amounts of oil in seawater by Fluorescence spectroscopy. Journal of the Fisheries Research Board of Canada, 30(8), 1039–1045. https://doi.org/10.1139/f73-175
  • Macaulay, M. B., & Rees, D. (2014). Bioremediation of oil spills: A review of challenges for research advancement. Annals of Environmental Science, 8, 9–37.
  • Nazik, A. F., Sawsan, A. M., & Omayma, E. A. (2015). Occurrence and distribution of aliphatic and polycyclic aromatic hydrocarbons in surface waters along coastal area of Suez Gulf. Egyptian Petroleum Research Institute, Nasr City, Cairo, Egypt. Egyptian Journal of Chemistry, 58(1), 43–69.
  • Ogeleka, D. F., Edjere, O., Nwudu, A., & Okieimen, F. E. (2016). Ecological effects of oil spill on pelagic and bottom-dwelling organisms in the riverine areas of Odidi and Egwa in Warri. Journal of Ecology and the Natural Environment, 8(12), 201–211. https://doi.org/10.5897/JENE2016.0593
  • Olayinka, O. O., Adewusi, A. A., Olujimi, O. O., & Adesida, A. A. (2018). Concentration of polycyclic aromatic hydrocarbons and estimated health risk of water samples around Atlas cove, Lagos, Nigeria. The Journal of Health and Pollution, 8(20), 1–17.
  • Olayinka, O. O., Adewusi, A. A., Olujimi, O. O., & Adesida, A. A. (2019). Polycyclic Aromatic hydrocarbons in sediment and health risk of fish, crab and shrimp around Atlas Cove, Nigeria. The Journal of Health and Pollution, 9(24), 1–21.
  • Özdemir, A. (2018). Usage of TPH (total petroleum hydrocarbons) in water analysis for oil and gas exploration: First important results from Turkey. Journal of Engineering Sciences and Design, 6(4), 615–636. http://dergipark.gov.tr/jesd
  • Park, I. S., & Park, J. W. (2011). Determination of a risk management primer at petroleum-contaminated sites: Developing new human health risk assessment strategy. Journal of Hazardous Materials, 185(2–3), 1374–1380. https://doi.org/10.1016/j.jhazmat.2010.10.058
  • Quevenco, R. (2011). Sustainable growth of coastal waters: A profile of the history and levels of coastal pollution in the Caribbean emerges. IAEA Bulletin, 53(1), 32–37.
  • Sakari, M., Ting, L. S., Houng, L. Y., Lim, S. K., Tahir, R., Adnan, F. A. F., Alj, Y., Soon, Z. Y., Hsia, B. S., & Shah, M. D. (2012). Urban effluent discharge in to rivers: Aforensic chemistry approach to evaluate the environmental deterioration. World Applied Science Journal, 20(9), 1227–1235.
  • Sakroon, S. A. (2008). Effect of oil field brine on groundwater quality in Marmul area [MSc. Thesis]. Sultanate of Oman. United Arab Emirates University. p. 146.
  • Sanches, P. J., Filho, P. J., Ohm, E. M. B., Ohm, G. M. B., Montenegro, G. O., Silveira, L. A., & Betemps, G. R. (2017). Determination of hydrocarbons transported by urban runoff in sediments of Säo Gonçalo Channel (Pelotas—RS, Brazil). Marine Pollution Bulletin, 114(2), 1088–1095. https://doi.org/10.1016/j.marpolbul.2016.10.024
  • Sari, G. L., Trihadiningrum, Y., & Ni′matuzahroh. (2018). Petroleum hydrocarbon pollution in soil and surface water by public oil fields in Wonocolo Sub-district, Indonesia. Journal of Ecological Engineering, 19(2), 184–193. https://doi.org/10.12911/22998993/82800
  • Shereet, S. M. (2009). Pollution of petroleum hydrocarbon in the new Damietta harbor, Egypt, Emirates. Journal of Engineering Research, 14(1), 65–71.
  • Stout, S. A., Uhler, A. D., & Emsbo-Mattingly, S. D. (2004). Comparative evaluation of background anthropogenic hydrocarbons in surficial sediments from nine urban waterways. Environmental Science & Technology, 38(11), 2987–2994. https://doi.org/10.1021/es040327q
  • Strelitz, J., Engel, L. S., Kwok, R. K., Miller, A. K., Blair, A., & Sandler, D. P. (2018). Deepwater Horizon oil spill exposures and nonfatal myocardial infarction in the Gulf study. Environmental Health, 17(1), 69. https://doi.org/10.1186/s12940-018-0408-8
  • Suratman, S. (2013). Distribution of total petrogenic hydrocarbon in Dungun River Basin, Malaysia. Oriental Journal Of Chemistry, 29(1), 77–80. https://doi.org/10.13005/ojc/290112
  • Tomlinson, P., & Michael, V. R. (2016). State and federal cleanup levels for petroleum hydrocarbons in soil: State of the states and implications for the future. Human and Ecological Risk Assessment: An International Journal No, 22(4), 911–926. https://doi.org/10.1080/10807039.2015.1120151
  • United Nations Environment Programme Global Environment Monitoring System/Water Programme (UNEPGEMS). (2008). Water quality for ecosystem and human health. (2nd ed.). UNEPGEMS.
  • United States Department of Health and Human Services (USDHHS). (1999). Toxicology profile for total petroleum hydrocarbons (TPH). Public Health Service Agency for Toxic Substances and Disease Registry.
  • US Environmental Protection Agency (USEPA). (1989). Risk assessment guidance for superfund. Vol. 1, Human health evaluation manual (part A) [Internet]. United States Environmental Protection Agency. Retrieved July 2017, from http://rais.ornl.gov/documents/HHEMA. pdf
  • US Environmental Protection Agency (USEPA). (2001). Risk assessment guidance for superfund: Process for conducting probabilistic risk assessment (Part A); EPA 540-R-02-002 (Vol. 3). Washington DC, US: Environmental Protection Agency.
  • US Environmental Protection Agency (USEPA). (2002). Integrated risk information system (IRIS) database. US environmental protection agency. National Center for Environmental Assessment.
  • US Environmental Protection Agency (USEPA). (2011). Exposure factors handbook 2011 edition (final) [Internet]. United States Environmental Protection Agency. Retrieved October 22, 2018, from https://cfpub.epa.gov/ncea/risk/recordisplay.cfm?deid=236252.
  • Uyom, U. U., Ama, O. K., & Ephraim, N. I. (2014). Some physical and chemical characteristics of Akpa Yafe River, Bakassi, Cross River State, Nigeria. Journal of Indian Academy, 2(11), 631–637.
  • Uzoekwe, S. A., & Oghosanine, F. A. (2011). The effect of refinery and petrochemical effluent on water quality of Ubeji creek Warri, Southern Nigeria. Ethio J Environ Stud Man, 4(2), 107–116.
  • World Health Organization WHO. (2011). Guidelines for drinking-water quality [Internet]. (4th ed.). http://www.who.int/water_sanitation_health/publications/2011/dwq_guidelines/en/
  • Zaghden, H., Kallel, M., Louati, A., Elleuch, B., Oudot, J., & Saliot, A. (2005). Hydrocarbons in surface sediments from the Sfax coastal zone, (Tunisia) Mediterranean Sea. Marine Pollution Bulletin, 50(11), 1287–1294. https://doi.org/10.1016/j.marpolbul.2005.04.045
  • Zrafi, I., Hizem, L., Chalghmi, H., Ghrabi, A., Rouabhia, M., & Saidane-Mosbahi, D. (2013). Aliphatic and aromatic biomarkers for petroleum hydrocarbon investigation in marine sediment. Journal of Petroleum Science Research, 2(4), 145–155.