Bibliometric Analysis of Standards, Regulations, and Guidelines Pertinent to Oil Pollution and Their Comparative Evaluation
Keywords:
Oil pollution, Environmental regulation, Standards, Bibliometrics, Policy analysis, Marine pollution, MARPOL, ISO 14001, Risk assessment, Spill responseAbstract
Oil pollution presents an enduring threat to marine environments, necessitating robust global and regional regulatory responses. This study presents a comprehensive bibliometric and comparative analysis of standards, regulations, and guidelines addressing oil pollution from 1970 to 2024. By systematically examining literature indexed in Scopus, Web of Science, regulatory databases, and grey literature sources, this research explores the evolution of legal and technical frameworks in parallel with scientific advances in oil pollution mitigation. The analysis centers on international conventions such as MARPOL Annex I and the OPRC Convention, along with regional instruments including the EU Marine Strategy Framework Directive and national regulations like the U.S. Oil Pollution Act of 1990. Using analytical tools such as VOSviewer, CiteSpace, and Bibliometrix in R, the study maps publication trends, identifies thematic clusters, and analyzes institutional and national contributions. Findings indicate a strong correlation between major oil spill incidents and surges in regulatory and research activity, particularly in North America and Europe. Keyword co-occurrence networks reveal dominant themes, including risk assessment, environmental impact, and spill response technologies. Despite the extensive body of regulations and technical standards, gaps persist in enforcement, standard harmonization, and integration of local knowledge into global policies. Developing countries, although heavily impacted by oil pollution, remain underrepresented in both academic and regulatory discourse. This study highlights the fragmentation between scientific research, legal mandates, and practical implementation. It calls for enhanced international coordination, capacity building in vulnerable regions, and the promotion of interdisciplinary frameworks that align scientific evidence with policy making. Recommendations include adopting integrated policy-science platforms, expanding multilingual and regional analyses, and broader inclusion of stakeholder perspectives. By contextualizing bibliometric insights within regulatory and technical landscapes, this research provides a strategic foundation for more resilient and equitable oil pollution governance worldwide.
References
Bi, D., Guo, J.-e., Wang, S., & Sun, S. (2020). New Research Trends in Unconventional Oil and Gas Environmental Issue: A Bibliometric Analysis. https://www.researchgate.net/publication/339945976_New_Research_Trends_in_Unconventional_Oil_and_Gas_Environmental_Issue_A_Bibliometric_Analysis
Carpenter, A. (2019). Oil Pollution in the North Sea: The Impact of Governance Measures on O Il Pollution over Several Decades. Hydrobiologia, 845(1), 1-19. doi:10.1007/S10750-018-3559-2
Castro, L. M. U., Maldonado, R. J., Palacios, M. Á. L., Pirela, M. P., Parra, J. C. P., Linzán, M. D. B., & Palacios, L. G. S. (2024). Bibliometric Analysis on Quality Management in the Oil Sector. International Journal of Religion, 5(11), 3696-3708. doi:10.61707/82H9YH34
Chen, B., Ye, X., Zhang, B., Jing, L., & Lee, K. (2018). Marine Oil Spills—Preparedness and Countermeasures. World Seas: an Environmental Evaluation, 407-426. doi:10.1016/B978-0-12-805052-1.00025-5
Čović, M., Ricci, S., Jelaska, I., & Stanivuk, T. (2024). Oil Spill Trajectory Modeling and Validation: Case Study on a Marine I Ncident at Adriatic Sea. WMU Journal of Maritime Affairs, 23(1), 103-113. doi:10.1007/S13437-023-00326-1
Elliott, J. (2021). The Marine Salvage Industry: Proven in Preventing Oil Spills. International Oil Spill Conference Proceedings, 2021(1), 684710. doi:10.7901/2169-3358-2021.1.684710
Erdem, P., Akyuz, E., & Arslan, O. (2021). The Role of Human Factors in Maritime Environmental Risk Assessment: A Case Study of Oil Spill Response. International Journal of Maritime Engineering, 163(A2), 101-110. doi:10.5750/IJME.V163IA2.761
Ferreira, N. M., Coutinho, R., & Oliveira, L. S. (2023). Emerging Studies on Oil Pollution Biomonitoring: A Systematic Review. Marine pollution bulletin, 192. doi:10.1016/J.MARPOLBUL.2023.115081
Furman, M. (2019). Responsibility of the Shipowner for the Pollution of the Marine Enviro Nment by Oil Products Due to Intentional Drain. Lex portus, 2019(2), 70-79. doi:10.26886/2524-101X.2.2019.5
Herrera-Franco, G., Montalván-Burbano, N., Mora-Frank, C., & Moreno-Alcívar, L. (2021). Research in Petroleum and Environment: A Bibliometric Analysis in Sout H America. International Journal of Sustainable Development and Planning, 16(6), 1109-1116. doi:10.18280/IJSDP.160612
Hong, S., Yoon, S. J., Kim, T., Ryu, J., Kang, S. G., & Khim, J. S. (2020). Response to Oiled Wildlife in the Management and Evaluation of Marine Oil Spills in South Korea: A Review. Regional Studies in Marine Science, 40. doi:10.1016/J.RSMA.2020.101542
Iouzzi, N., Meftah, M., Haffane, M., Mouakkir, L., Chagdali, M., & Mossa, M. (2023). Modeling of the Fate and Behaviors of an Oil Spill in the Azemmour Riv Er Estuary in Morocco. Water, 15(9). doi:10.3390/W15091776
Iskakov, B., Nurakynov, S., Dabas, J., Zhantayev, Z., Balakay, L., Dedova, T., Yelisseyeva, A., & Sydyk, N. (2024). Enhancing Environmental Sensitivity and Vulnerability Assessments for Oil Spill Responses in the Caspian Sea. Sustainability, 16(21). doi:10.3390/SU16219566
Kabyl, A., Yang, M., Shah, D., & Ahmad, A. (2022). Bibliometric Analysis of Accidental Oil Spills in Ice-Infested Waters. International Journal of Environmental Research and Public Health, 19(22). doi:10.3390/IJERPH192215190
Lee, S., & Bautist, L. (2018). Part Xii of the United Nations Convention on the Law of the Sea and Th E Duty to Mitigate against Climate Change: Making out a Claim, Causati on, and Related Issues. Ecology Law Quarterly, 45(1), 129-155. doi:10.15779/Z38M32N965
Li, S. (2020). The Capabilities for Prevention and Control of Marine Pollution by Shi Ps: China’s Construction Experiences and Future Perspectives. IOP Conference Series: Earth and Environmental Science, 435(1). doi:10.1088/1755-1315/435/1/012005
Liu, C., Xia, W., Cao, Z., Dai, J., Zhou, R., Li, H., & Xu, J. (2025). Bibliometric Analysis and Research Progress on Hydrogen Peroxide and P Ersulfate Oxidation Processes in the Remediation of Actual Oil-Contami Nated Soil. Environmental science and pollution research international. doi:10.1007/S11356-025-35950-2
Mitchell, R. B. (1994). Intentional Oil Pollution at Sea : Environmental Policy and Treaty Com Pliance. 361. https://books.google.com/books/about/Intentional_Oil_Pollution_at_Sea.html?id=7cl_xvzAP30C
Müller, M. N., Vicente Ferreira Junior, A., Zanardi Lamardo, E., Yogui, G. T., Flores Montes, M. d. J., Silva, M. A., Lima, E. J. A. C., Rojas, L. A. V., Jannuzzi, L. G. d. S., Cunha, M. d. G. G. d. S., Melo, P. A. M. d. C., Carvalho, V. P. C., Carneiro, Y. M. M., Carreira, R. d. S., Araujo, M., & Santos, L. P. d. S. (2024). Finding the Needle in a Haystack: Evaluation of Ecotoxicological Effec Ts Along the Continental Shelf Break during the Brazilian Mysterious O Il Spill. Environmental Pollution, 357. doi:10.1016/J.ENVPOL.2024.124422
Nwaichi, E. O., & Osuoha, J. O. (2022). Has the National Policy on Environmental Pollution Control in Nigeria Been Neglected in the Niger Delta Region? An Update. Environment, Development and Sustainability, 24(11), 12494-12517. doi:10.1007/S10668-021-01973-1
Okafor, C. P., Chikere, C. B., Akaranta, O., & Ntushelo, K. (2022). Crude Oil Hydrocarbons' Effect on Soil Microbial Metagenome from Niger Delta Polluted Soils. F1000Research, 11, 1108. doi:10.12688/F1000RESEARCH.124785.1
Osborne, O. E., Willie, M. M. C., & O’Hara, P. D. (2022). The Effects of Oil Spill Dispersant Use on Marine Birds: A Review of S Cientific Literature and Identification of Information Gaps. Environmental Reviews, 31(2), 243-255. doi:10.1139/ER-2022-0072
Parviainen, T., Goerlandt, F., Helle, I., Haapasaari, P., & Kuikka, S. (2021). Implementing Bayesian Networks for Iso 31000:2018-Based Maritime Oil S Pill Risk Management: State-of-Art, Implementation Benefits and Challe Nges, and Future Research Directions. Journal of environmental management, 278 Pt 1. doi:10.1016/J.JENVMAN.2020.111520
Pataki, G. E., & Cahill, J. P. (1999). Technical Guidance for Screening Contaminated Sediments. http://eighteenmilerap.com/SED12_Technical%20Guidance%20for%20Screening%20Contaminated%20Sediments.pdf
Paz-Barzola, D., & Escobar-Segovia, K. (2025). Oil Pollution and Public Health: A Bibliometric Review of Trends, Key Contributions, and Future Perspectives. Environmental Quality Management, 34(3). doi:10.1002/TQEM.70022
Qothrunada, N., & Handayani, W. (2023). Does Environmental Disclosure of the Oil and Gas Industry Comply with the Gri? Evidence from Indonesia. Journal of Business Management and Accounting, 13(2), 153-180. doi:10.32890/JBMA2023.13.2.1
Resen, E. J., & AbdulRazzaq, M. S. (2022). An Evaluation of Environmental Performance According to the Internatio Nal Standard (Iso14001: 2015) in a Field East of Baghdad / a Case Stud Y in the Midline Oil Company. Journal of Economics and Administrative Sciences, 28(134), 29-56. doi:10.33095/JEAS.V28I134.2420
Sabela-Rikhotso, P. T. Z., Niekerk, D., & Nemakonde, L. D. (2022). A Conceptual Model for Marine Oil Spills Management in South Africa. Disaster Prevention and Management: An International Journal, 31(4), 457-474. doi:10.1108/DPM-08-2021-0241
Singh, D. S. K. (2024). A Comprehensive Analysis of Marine Life Pollution Using Machine Learni Ng Techniques on Historical Shipping Pollutants Data. INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGE MENT, 08(01), 1-10. doi:10.55041/IJSREM27969
Soares, J., Fernandes, R., Brito, D., Oliveira, H., Neuparth, T., Martins, I., & Santos, M. M. (2020). Environmental Risk Assessment of Accidental Marine Spills: A New Appro Ach Combining an Online Dynamic Hazardous and Noxious Substances Datab Ase with Numerical Dispersion, Risk and Population Modelling. The Science of the total environment, 715. doi:10.1016/J.SCITOTENV.2020.136801
Sule, O. P., & Ovwromoh, S. E. (2024). Assessing the Risks of Oil Spills and Other Environmental Hazards in B Onny and Ogba/Egbema/Ndoni Local Government Area of Rivers State, Nige Ria. British Journal of Earth Sciences Research, 12(2), 82-92. doi:10.37745/BJESR.2013/VOL12N28292
Tiansi, X., Jincheng, H., & Lin, W. (2019). Research Progress of Oil Pollution on Soil Based on Bibliometric Analy Sis. The Frontiers of Society, Science and Technology, 1(8), 1-13. doi:10.25236/FSST.2019.010801
Valeur, J. R., & Andersen, L. W. (2020). Performance Standards for Oil Spill Risk. Society of Petroleum Engineers - SPE International Conference and Exhi bition on Health, Safety, Environment, and Sustainability 2020, HSE an d Sustainability 2020. doi:10.2118/199532-MS
Vasconcelos, R. N., Lima, A. T. C., Lentini, C. A. D., Miranda, G., Mendonça, L. F., Silva, M. A., Cambuí, E. C. B., Lopes, J. M., & Porsani, M. J. (2020). Oil Spill Detection and Mapping: A 50-Year Bibliometric Analysis. Remote Sensing 2020, Vol. 12, Page 3647, 12(21), 3647. doi:10.3390/RS12213647
Vithanage, M., Alwis, A., Cumaranatunga, R., Botheju, D., & Wells, M. (2023). Maritime Disasters and Pollution: X-Press Pearl Maritime Debacle. Marine pollution bulletin, 196. doi:10.1016/J.MARPOLBUL.2023.115532
Wibisono, M. S. (2022a). Local Contingency Plan for Oil Spill Mitigation at Sea: Anecessary Doc Ument That Should Be Provided to Combatan Emergency. Scientific Contributions Oil and Gas, 29(2), 24-33. doi:10.29017/SCOG.29.2.1024
Wibisono, M. S. (2022b). The Use of Bio-Molecular Substance of Marine Biota as an Alternative E Arly Indicator of Oil Polluted Environment: A New Approach for Monitor Ing Consideration. Scientific Contributions Oil and Gas, 28(1), 23-31. doi:10.29017/SCOG.28.1.1036
Wu, J., Wang, M., Ye, C. M., Xu, Z. H., Sha, C. Y., Zhang, J. Y., & Huang, S. F. (2020). Bibliometric Analysis of Research Hotspots Related to Marine Oil Spill Accidents in the Environmental Field Based on Web of Science. Fa yi xue za zhi, 36 4(4), 461-469. doi:10.12116/J.ISSN.1004-5619.2020.04.005
Yap, H. S., Zakaria, N. N., Zulkharnain, A., Sabri, S., Gomez-Fuentes, C., & Ahmad, S. A. (2021). Bibliometric Analysis of Hydrocarbon Bioremediation in Cold Regions an D a Review on Enhanced Soil Bioremediation. Biology, 10(5). doi:10.3390/BIOLOGY10050354
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Copyright (c) 2026 Esmail Radgohar (Author); Ahmad Sharafati; Seyed Abbas Haghshenas, Seyed Abbas Hosseini (Author)

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