Environmental Impact Assessment of the Petroleum Industries: A Review

Authors

  • Zainab Y. Abdulhassan Department of Environmental Engineering, College of Engineering, University of Baghdad, Iraq
  • Hasanain S. Alhares Department of Environmental Engineering, College of Engineering, University of Baghdad, Iraq. https://orcid.org/0000-0002-7187-9011

DOI:

https://doi.org/10.61704/pr.532

Keywords:

Environmental impact assessment, water pollution, oil pollution, acid rain, soil pollution, air pollution

Abstract

This research aims to shed light on the phenomenon of environmental pollution and its effects on the environment in general, and oil pollution in particular. In recent years, pollution has taken many forms, significantly impacting the composition of natural elements, such as air, soil, and water pollution. The impact of pollution then extends to all areas of human life. The research reviewed the environmental and economic effects of oil pollution. The gasses released during the evaporation or breakdown of spilled oil particles make oil and its derivatives extremely hazardous. In addition to crude oil, other harmful gasses including hydrogen sulfide (H2S) are also present in oil. Oil poses a significant threat to marine life, as it can poison or kill marine organisms. The effects of an oil spill range from immediate to long-term. Immediate damage is felt in marine animals and plants that live on the water surface, such as birds and seals, while long-term damage occurs as a result of the oil's decomposition and its negative impact on the marine food chain. In addition, spilled oil poses a risk to industrial facilities and oil refineries, due to the potential for fires or explosions, increasing the economic and environmental damage associated with these incidents. The greatest impact is on desalination plants, as toxic hydrocarbons can contaminate drinking water, causing these plants to shut down for potentially extended periods. Oil spills have significant economic impacts, including production shutdowns, impacts on fish stocks, and the high costs of combating and cleaning up affected beaches. The invasive emissions from the oil factories contribute to the occurrence of acid rain. Acid rain is the third most significant environmental problem in the world after global warming and ozone depletion. It is the most significant problem resulting from local air pollution, which is carried by winds across the borders of neighboring countries and causes serious damage to terrestrial and aquatic ecosystems and human health.

References

Adeola, A. O., Akingboye, A. S., Ore, O. T., Oluwajana, O. A., Adewole, A. H., Olawade, D. B., & Ogunyele, A. C. (2021). Crude oil exploration in Africa: Socio-economic implications, environmental impacts, and mitigation strategies. Environment Systems and Decisions, 42(1), 26–50. https://doi.org/10.1007/s10669-021-09827-x

Agha, G. U., Irrechukwu, D. O., & Zagi, M. M. (2002). Environmental impact assessment and the Nigerian oil industry: A review of experiences and learnings. International Conference on Health, Safety and Environment in Oil and Gas Exploration and Production, 1245–1250. https://doi.org/10.2118/74074-MS

Agnovianto, Y., Dewanti, L., & Dwiningsih, S. R. (2020). Infertility causing factors & the success rate of in vitro fertilization (IVF) in one of fertility center of Surabaya City, Indonesia. Indian Journal of Public Health Research & Development, 11(2), 1978–1982.

Alam, J. B., Ahmed, A. A. M., & Munna, G. M. (2010). Environmental impact assessment of oil and gas sector: A case study of Magurchara gas field. Journal of Soil Science and Environmental Management, 1(5), 86–91.

Aldaood, A., Al-Kiki, I. M., & Abdulnafaa, M. (2022). Industrial waste and its impacts on the engineering properties of soil: A review. Al-Rafidain Engineering Journal, 27, 25–35. https://doi.org/10.33899/rengj.2021.131043.01125

Ali, Q. A., Ali, M. F., Mohammed, S. J., & M-Ridha, M. J. (2024). Utilising date palm fibres as a permeable reactive barrier to remove methylene blue dye from groundwater: A batch and continuous adsorption study. Environmental Monitoring and Assessment, 196(11), 1112.

Ali, Q. A., Shaban, M. A. A., Mohammed, S. J., M-Ridha, M. J., Abd-Almohi, H. H., Abed, K. M., Salleh, M. Z. M., & Hasan, H. A. (2023). Date palm fibre waste exploitation for the adsorption of Congo red dye via batch and continuous modes. Journal of Ecological Engineering, 24(10), 259–276. https://doi.org/10.12911/22998993/169176

Almeida, C., Bonilla, S. H., Giannetti, B. F., & Huisingh, D. (2013). Cleaner production initiatives and challenges for a sustainable world: An introduction to this special volume. Journal of Cleaner Production, 47, 1–10.

Al-Musawi, T. J., Alnasrawi, F. A., Kareem, S. L., & Mohammed, A. A. (2024). Simultaneous adsorption of cadmium, zinc, and lead ions from aqueous solution by montmorillonite clay coated with MgCuAl-LDH nanoparticles. Journal of the Indian Chemical Society, 101(11). https://doi.org/10.1016/j.jics.2024.101378

Alrawi, A. T., & Alrawi, A. T. (2022). Assessment of the effects of acid rain on the biosphere in Mosul City, Iraq. Tikrit Journal of Engineering Sciences, 29(2), 22–27. https://doi.org/10.25130/tjes.29.2.4

Aziz, G. M., Hussein, S. I., M-Ridha, M. J., Mohammed, S. J., Abed, K. M., Muhamad, M. H., & Hasan, H. A. (2023). Activity of laccase enzyme extracted from Malva parviflora and its potential for degradation of reactive dyes in aqueous solution. Biocatalysis and Agricultural Biotechnology, 50, 102671.

Baokang, P. (1989). Combating oil pollution in China. International Oil Spill Conference Proceedings, 1989(1), 197–199. https://doi.org/10.7901/2169-3358-1989-1-197

Bhargava, S., & Bhargava, S. (2013). Ecological consequences of acid rain. IOSR Journal of Applied Chemistry, 5, 19–24.

Bhatti, N., Streets, D. G., & Foell, W. K. (1992). Acid rain in Asia. Environmental Management, 16(4), 541–562.

Boudehane, A. (2014). Etude et caractérisations de la pollution atmosphérique de la région de Ouargla. University of Kasdi Merbah Ouargla.

Boughton, B., & Horvath, A. (2004). Environmental assessment of used oil management methods. Environmental Science & Technology, 38(2), 353–358.

Clark, B. D. (1984). Environmental impact assessment (EIA): Scope and objectives. In Perspectives on Environmental Impact Assessment (pp. 3–13). Springer.

Cordes, E. E., Jones, D. O. B., Schlacher, T. A., Amon, D. J., Bernardino, A. F., Brooke, S., ... & Escobar-Briones, E. G. (2016). Environmental impacts of the deep-water oil and gas industry: A review to guide management strategies. Frontiers in Environmental Science, 4, 58.

Costantini, V., Gracceva, F., Eni, F., & Mattei, E. (2004). Oil security short- and long-term policies. SSRN.

De Oliveira Neto, G. C., Vendrametto, O., Naas, I. A., Palmeri, N., & Lucato, W. C. (2016). Environmental impact reduction as a result of cleaner production implementation: A case study in the truck industry. Journal of Cleaner Production, 129, 681–692.

Demirbas, A. (2011). Waste management, waste resource facilities and waste conversion processes. Energy Conversion and Management, 52(2), 1280–1287.

Dey, P. K. (2001). Integrated approach to project feasibility analysis: A case study. Impact Assessment and Project Appraisal, 19(3), 235–245.

Ekins, P., Vanner, R., & Firebrace, J. (2007). Zero emissions of oil in water from offshore oil and gas installations: Economic and environmental implications. Journal of Cleaner Production, 15(13–14), 1302–1315.

El Badry Fadl, D. E. (2021). The role of environmental impact assessment in achieving sustainable development. International Journal of Modern Agriculture and Environment, 1(1), 38–50.

Farrington, J. W. (2014). Oil pollution in the marine environment II: Fates and effects of oil spills. Environment: Science and Policy for Sustainable Development, 56(4), 16–31.

Ferenbaugh, R. W. (1975). Acid rain: Biological effects and implications. Environmental Affairs, 4, 355–368. Retrieved from https://heinonline.org/HOL/Page?handle=hein.journals/bcenv4&id=755

Gavrilova, O., Vilu, R., & Vallner, L. (2010). A life cycle environmental impact assessment of oil shale produced and consumed in Estonia. Resources, Conservation and Recycling, 55(2), 232–245. https://doi.org/10.1016/j.resconrec.2010.09.013

Godø, O. R., Klungsøyr, J., Meier, S., Tenningen, E., Purser, A., & Thomsen, L. (2014). Real time observation system for monitoring environmental impact on marine ecosystems from oil drilling operations. Marine Pollution Bulletin, 84(1–2), 236–250. https://doi.org/10.1016/j.marpolbul.2014.05.007

Goyer, R. A., Bachmann, J., Clarkson, T. W., Ferris, B. G., Graham, J., Mushak, P., Perl, D. P., Rall, D. P., Schlesinger, R., Sharpe, W., & Wood, J. M. (1985). Potential human health effects of acid rain: Report of a workshop. Environmental Health Perspectives, 60, 355–368. https://doi.org/10.1289/ehp.8560355

Greenberg, E. S. (1981). Industrial self-management and political attitudes. American Political Science Review, 75(1), 29–42.

Grutter, J. M., & Egler, H.-P. (2004). From cleaner production to sustainable industrial production modes. Journal of Cleaner Production, 12(3), 249–256.

Gyawali, K., & Acharya, P. (2023). Environmental pollution and its effects on human health. Interdisciplinary Research in Education, 8(1), 45–55. https://doi.org/10.3126/ire.v8i1.56729

Hens, L., Block, C., Cabello-Eras, J. J., Sagastume-Gutierez, A., Garcia-Lorenzo, D., Chamorro, C., Mendoza, K. H., Haeseldonckx, D., & Vandecasteele, C. (2018). On the evolution of “cleaner production” as a concept and a practice. Journal of Cleaner Production, 172, 3323–3333.

Ibrahim, M. A., Shaban, M. A. A., Hasan, Y. R., M-Ridha, M. J., Hussein, H. A., Abed, K. M., Mohammed, S. J., Muhamad, M. H., & Hasan, H. A. (2022). Simultaneous adsorption of ternary antibiotics by sunflower husk coated with copper oxide nanoparticles. Journal of Ecological Engineering, 23(6), 30–42.

Isah, M. N. (2012). The role of environmental impact assessment in Nigeria’s oil and gas industry.

Khalaf, A. H., Ali, Q. A., Alhares, H. S., Abd-Almohi, H. H., Mohammed, S. J., & Murshed, M. F. (2025). Removal of malachite green dye from aqueous solutions using activated carbon from Ficus benjamina. International Journal of Environmental Analytical Chemistry, 1–30. https://doi.org/10.1080/03067319.2025.XXXXX

Kowalok, M. E. (1993). Common threads: Research lessons from acid rain, ozone depletion, and global warming. Environment: Science and Policy for Sustainable Development, 35(6), 12–38.

Kuzhaeva, A., & Berlinskii, I. (2018). Effects of oil pollution on the environment. SGEM Conference Proceedings, 18(5.1), 313–320. https://doi.org/10.5593/sgem2018/5.1/s20.041

Likens, G. E., Wright, R. F., Galloway, J. N., & Butler, T. J. (1979). Acid rain. Scientific American, 241(4), 43–51.

Lima, G. A. C., & Suslick, S. B. (2001). Investment timing and environmental assessment impact on decision-making process in the Brazilian petroleum industry. Canadian International Petroleum Conference. https://doi.org/10.2118/2001-066

Liu, Z., Yang, J., Zhang, J., Xiang, H., & Wei, H. (2019). A bibliometric analysis of research on acid rain. Sustainability, 11(11), 3077.

Maaroof, B. F., Omran, M. H., Al-Qaim, F. F., Salman, J. M., Hussain, B. N., Abdellatif, M., Carnacina, I., Al-Hasani, B., Jawad, M. R., & Hussein, W. A. (2023). Environmental assessment of Al-Hillah River pollution in Babil Governorate (Iraq). Journal of the Geographical Institute “Jovan Cvijić”, 73(1), 1–16.

McCormick, J. (2013). Acid earth: The global threat of acid pollution. Routledge.

Mohammed, S. J., & Mohammed-Ridha, M. J. (2021). Optimization of levofloxacin removal using electrocoagulation: A response surface methodology approach. Iraqi Journal of Agricultural Sciences, 52(1), 204–217. https://doi.org/10.36103/ijas.v52i1.1252

Mohammed, S. J., M-Ridha, M. J., Abed, K. M., & Elgharbawy, A. A. M. (2021). Removal of levofloxacin and ciprofloxacin using the electrocoagulation process: Economic evaluation. International Journal of Environmental Analytical Chemistry, 103(16), 3801–3819. https://doi.org/10.1080/03067319.2021.1913733

Mohammed, S. J., M-Ridha, M. J., Ali, Q. A., Abed, K. M., & Ahmadzadeh, S. (2023). Reliable treatment approach for antibiotic removal: Kinetic and isotherm studies. Desalination and Water Treatment, 307, 50–62. https://doi.org/10.5004/dwt.2023.29776

Moore, S. F., & Dwyer, R. L. (1974). Effects of oil on marine organisms: A critical assessment of published data. Water Research, 8(10), 819–827.

Moors, E. H. M., Mulder, K. F., & Vergragt, P. J. (2005). Towards cleaner production: Barriers and strategies in the base metals industry. Journal of Cleaner Production, 13(7), 657–668. https://doi.org/10.1016/j.jclepro.2003.12.010

Morgan, R. K. (2012). Environmental impact assessment: The state of the art. Impact Assessment and Project Appraisal, 30(1), 5–14.

M-Ridha, M. J., Ali, M. F., Taly, A. H., Abed, K. M., Mohammed, S. J., Muhamad, M. H., & Hasan, H. A. (2022). Subsurface flow phytoremediation using barley plants for kerosene removal. Water, 14(5). https://doi.org/10.3390/w14050687

M-Ridha, M. J., Zeki, S. L., Mohammed, S. J., Abed, K. M., & Hasan, H. A. (2021). Heavy metals removal using horizontal subsurface constructed wetlands. Journal of Ecological Engineering, 22(8), 243–250.

Nduka, J. K. C., Orisakwe, O. E., Ezenweke, L. O., Ezenwa, T. E., Chendo, M. N., & Ezeabasili, N. G. (2008). Acid rain phenomenon in Niger Delta: Economic, biodiversity, and public health concerns. The Scientific World Journal, 8, 811–818. https://doi.org/10.1100/tsw.2008.47

Nduka, J. K., Okafor, V. N., & Odiba, I. O. (2016). Impact of oil and gas activities on acidity of rain and surface water in Niger Delta: An environmental review. Journal of Environmental Protection, 7(4), 566–581. https://doi.org/10.4236/jep.2016.74051

Okedu, K. E. (2020). Wind-solar hybrid renewable energy system. Retrieved from https://books.google.com

O’Rourke, D., & Connolly, S. (2003). Just oil? Environmental and social impacts of oil production and consumption. Annual Review of Environment and Resources, 28, 587–617. https://doi.org/10.1146/annurev.energy.28.050302.105617

Parungo, F., Nagamoto, C., & Maddl, R. (1987). Mechanisms of acid rain formation. Journal of Atmospheric Sciences, 44(21), 3162–3174.

Rehman, J., Shahid, A., & Foster, S. (2017). The Asian yearbook of human rights and humanitarian law. Brill.

Rocca, V., & Viberti, D. (2013). Environmental sustainability of the oil industry. American Journal of Environmental Sciences, 9(3), 210–217.

Rosa, L., Davis, K. F., Rulli, M. C., & D’Odorico, P. (2017). Environmental consequences of oil production from oil sands. Earth’s Future, 5(2), 158–170. https://doi.org/10.1002/2016EF000484

Sachs, J. D. (2012). From millennium development goals to sustainable development goals. The Lancet, 379(9832), 2206–2211.

Salman, H. A. (2016). The economics of renewable energy in Germany, Egypt, and Iraq. Arab Center for Research and Policy Studies.

Salman, M. S., Alhares, H. S., Ali, Q. A., M-Ridha, M. J., Mohammed, S. J., & Abed, K. M. (2022). Cladophora algae modified with CuO nanoparticles for tetracycline removal. Water, Air, and Soil Pollution, 233(8). https://doi.org/10.1007/s11270-022-05813-4

Samia, C., Hamzi, R., & Chebila, M. (2018). Lessons from oil refinery accidents for industrial risk assessment. Management of Environmental Quality, 29(4), 643–665.

Santos, I. C., Hildenbrand, Z. L., & Schug, K. A. (2018). Analytical methods for assessing environmental impacts of unconventional oil and gas. Analytical Chemistry, 91(1), 689–703.

Sarkar, C. G. (2020). Tetraethyllead in gasoline: A case of delayed regulation. Oriental Journal of Chemistry, 36(1), 86–94.

Sedyaaw, P., Kawade, S. S., Bhaladhare, D. R., Pranali, K., & Pandey, A. (2024). Causes, effects, and management measures of acid rain: A review. Bhartiya Krishi Anusandhan Patrika. https://doi.org/10.18805/bkap732

Seyferth, D. (2003). The rise and fall of tetraethyllead. 2. Organometallics, 22(25), 5154–5178.

Sivalingam, S., Vishal, G., & Anush, B. (2024). Environmental and health effects of acid rain. In Health and environmental effects of ambient air pollution (Vol. 1, pp. 91–107).

Smith, L. C., Smith, M., & Ashcroft, P. (2011). Environmental and economic damages from BP’s Deepwater Horizon spill. Albany Law Review, 74(1), 563–585.

Tabatabai, M. A., & Olson, R. A. (1985). Effect of acid rain on soils. Critical Reviews in Environmental Science and Technology, 15(1), 65–110.

Vieira, L. C., & Amaral, F. G. (2016). Barriers and strategies for applying cleaner production: A systematic review. Journal of Cleaner Production, 113, 5–16.

Wake, H. (2005). Oil refineries: A review of their ecological impacts on aquatic environments. Estuarine, Coastal and Shelf Science, 62(1–2), 131–140.

Wright, R. F., & Schindler, D. W. (1995). Interaction of acid rain and global changes: Effects on ecosystems. Water, Air, and Soil Pollution, 85(1), 89–99.

Zhao, Y., Xu, J., Xie, X., & Yu, H. (2014). Environmental impact assessment of corn-based polyols vs. petroleum-based polyols. Journal of Cleaner Production, 68, 272–278. https://doi.org/10.1016/j.jclepro.2013.12.049

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Published

2025-10-29

How to Cite

Abdulhassan, Z. Y., & Alhares, H. S. (2025). Environmental Impact Assessment of the Petroleum Industries: A Review. PROSPECTIVE RESEARCHES, 25(4), 78–92. https://doi.org/10.61704/pr.532

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