A Review on the Geotechnical and Electrical Properties of Hydrocarbon-Contaminated Soils

Authors

DOI:

https://doi.org/10.31663/utjes.15.2.728

Keywords:

Soil pollution, Ground contamination, Hydrocarbons, Soil treatment

Abstract

Oil contamination of the ground due to leaks in oil pipes, transportation of hydrocarbon products, or during excavation stages of oil production can alter the subsurface's physical characteristics, mechanical behavior, chemical reactivity, and electrical response. Consequently, the subsurface may become unsuitable for construction and might require significant remediation. Therefore, it is essential to gain a deep understanding of the overall attitude and the associated ground properties in case of pollution. This paper reviews the existing literature related to hydrocarbon soil contamination. The main focus is on previous studies that evaluate the geotechnical and electrical properties of subsoil after exposure to crude oil or its products. The paper emphasizes soil properties such as soil particles, Atterberg limits, specific gravity, compaction characteristics, pH value, undrained shear strength, and consolidation response. It is found that soil properties are significantly affected by contamination, depending on soil type, hydrocarbon product, and contamination proportions. Additionally, methods of soil treatment are briefly discussed.

References

Abduljauwad, S. N., & Akram, T. (2007). Geotechnical behavior of oil-contaminated fine-grained soils. Geotechnical Behavior of Oil-Contaminated Fine-Grained Soils.

Al-Behadili, A. A., Al-Muhyi, A. H. A., & Al-Taai, O. T. (2023). Analyzing the oil pollution resulting from the Iraqi oil ports in the Northern Arabian Gulf using the GNOME model. 4TH INTERNATIONAL SCIENTIFIC CONFERENCE OF ENGINEERING SCIENCES AND ADVANCES TECHNOLOGIES, 2830(1), 50004. https://doi.org/10.1063/5.0156844

AL-khyat, S., Naji, D., T. Hamad, H., & Onyeaka, H. (2023). A REVIEW ON SOIL CONTAMINATION SOURCES: IMPACT ON ENGINEERING PROPERTIES AND REMEDIATION TECHNIQUES. Journal of Engineering and Sustainable Development, 27(3), 292–307. https://doi.org/10.31272/jeasd.27.3.1

Al-Obaidy, A., Al-Shueli, A., Sattar, H., Majeed, Z., & Hamid, N. A. H. (2019). An experimental study on geotechnical and electrical properties of an oil-contaminated soil at thi-qar governorate/Iraq. International Review of Civil Engineering, 10(3), 148–154. https://doi.org/10.15866/irece.v10i3.1650

Al-Obaidy, N., & Al-Shueli, A. (2020). Electrical Response of Selected High Hydrocarbons Contaminated Soils at ThiQar/Iraq. Solid State Technology, 1360–1368.

Al-Obaidy, N. K., Mosleh, A. T., & Al-Shueli, A. I. (2020). The Potential of Assessing Compacted Polluted Expansive Soils Using Electrical Resistivity Box. J. Green. Eng., 10(11), 10864–10878. https://doi.org/10.1088/1757-899X/1076/1/012097

Al-Obaidy, N. K., & Shaia, H. (2019). Evaluation the geotechnical properties of oil-polluted soil from two selected areas in Thi-Qar Governorate-Iraq. University of Thi-Qar Journal, 14(1), 17–30. https://doi.org/10.32792/utq/utj/vol14/1/3

Al-Sanad, H. A., Eid, W. K., & Ismael, N. F. (1995). Geotechnical properties of oil-contaminated Kuwaiti sand. Journal of Geotechnical Engineering, 121(5), 407–412. https://doi.org/10.1061/(ASCE)0733-9410(1995)121:5(407)

Al-Shueli, A., Al-Kinani, A., & Al-Obaidy, N. (2022). Inexpensive DC to AC Inverter Device for Artificial Saline Soils Resistivity Analysis. International Review on Modelling and Simulations (IREMOS), 15(4), 244. https://doi.org/10.15866/iremos.v15i4.22533

Alhassan, H. M., & Fagge, S. A. (2013). Effects of crude oil, low point pour fuel oil and vacuum gas oil contamination on the geotechnical properties sand, clay and laterite soils. International Journal of Engineering Research and Applications, 3(1), 1947–1954.

Ali, S., Nie, Z., Ismail, A. S., & Sohel, R. (2024). Assessing changes in geotechnical properties of soil caused by oil contaminants. IOP Conference Series: Earth and Environmental Science, 1335(1), 12029. DOI 10.1088/1755-1315/1335/1/012029

Almaliki, D. F., Ramli, H., Zaiter, A., & Sheriff, I. (2025). Review on Migration and Entrapment of Light Nonaqueous Phase Liquids‎ in the Subsurface Environment. Desalination and Water Treatment, 101095. https://doi.org/10.1016/j.dwt.2025.101095

Daka, M. (2015). Geotechnical properties of oil contaminated soil. The University of Manchester (United Kingdom).

Elisha, A. T. (2012). Effect of crude oil contamination on the geotechnical properties of soft clay soils of niger delta region of Nigeria. Electronic Journal of Geotechnical Engineering, 17, 1929–1938.

Granitic, O.-C. (2011). Engineering geological properties of oil-contaminated granitic and metasedimentary soils. Sains Malaysiana, 40(4), 293–300.

Harsh, G., Patel, A., Himanshu, B., & Tiwari, P. (2016). Effect of rate of crude oil contamination on index properties and engineering properties of clays and sands. Indian Journal of Science and Technology, 9(30), 1–4. https://doi.org/10.17485/IJST/2016/V9I30/99193.

Ijimdiya, T. S. (2012). Effect of oil contamination on particle size distribution and plasticity characteristics of lateritic soil. Advanced Materials Research, 367, 19–25. https://doi.org/10.4028/www.scientific.net/AMR.367.19

Karabash, Z., Al-Obaydi, M. A., Awad, M. A., & Al-Khashab, M. N. (2023). Geotechnical properties of clay soil contaminated with different types of oil. Geotechnical and Geological Engineering, 41(4), 2677–2689. https://doi.org/10.1007/s10706-023-02420-w

Karkush, M. O., & Abdulkareem, M. S. (2019). Deep remediation and improvement of soil contaminated with residues oil using lime piles. International Journal of Environmental Science and Technology, 16(11), 7197–7206. https://doi.org/https://doi.org/10.31272/jeasd.27.3.1

Karkush, M. O., & Ali, S. D. (2019). Remediation of clayey soil contaminated with copper sulfate using washing-enhanced electrokinetics technique. Russian Journal of Electrochemistry, 55(12), 1381–1390. https://doi.org/10.5599/JESE.571

Karkush, M. O., Ali, S. D., Karkush, M., & Ali, S. (2020). Impacts of lead nitrate contamination on the geotechnical properties of clayey soil. J Eng Sci Technol, 15(2), 1032–1045.

Karkush, M. O., & Altaher, T. A. (2017). Remediation of contaminated soil of Thi-Qar oil refinery plant. Proceedings of the 19th International Conference on Soil Mechanics and Geotechnical Engineering, 1.

Karkush, M. O., & Jihad, A. G. (2020). Studying the Geotechnical Properties of Clayey Soil Contaminated by Kerosene. Key Engineering Materials, 857, 383–393. https://doi.org/10.4028/www.scientific.net/KEM.857.383

Karkush, M. O., Zaboon, A. T., & Hussien, H. M. (2013). Studying the effects of contamination on the geotechnical properties of clayey soil. Coupled Phenomena in Environmental Geotechnics, 21(5), 599–607.

Kermani, M., & Ebadi, T. (2012). The effect of oil contamination on the geotechnical properties of fine-grained soils. Soil and Sediment Contamination: An International Journal, 21(5), 655–671.

https://doi.org/10.1080/15320383.2012.672486

Khamehchiyan, M., Charkhabi, A. H., & Tajik, M. (2007). Effects of crude oil contamination on geotechnical properties of clayey and sandy soils. Engineering Geology, 89(3–4), 220–229. https://doi.org/10.1016/j.enggeo.2006.10.009

Khosravi, E., Ghasemzadeh, H., Sabour, M. R., & Yazdani, H. (2013). Geotechnical properties of gas oil-contaminated kaolinite. Engineering Geology, 166, 11–16. https://doi.org/10.1016/j.enggeo.2013.08.004

Mekkiyah, H. M., Al-Hamadani, Y. A. J., Abdulhameed, A. A., Resheq, A. S., & Mohammed, Z. B. (2023). Effect of crude oil on the geotechnical properties of various soils and the developed remediation methods. Applied Sciences, 13(16), 9103. https://doi.org/10.3390/app13169103

Nasr, A. M. A. (2013). Uplift behavior of vertical piles embedded in oil-contaminated sand. Journal of Geotechnical and Geoenvironmental Engineering, 139(1), 162–174. https://doi.org/10.1061/(ASCE)GT.1943-5606.0000739

Oluremi, J. R., Adewuyi, A. P., & Sanni, A. A. (2015). Compaction characteristics of oil contaminated residual soil. Journal of Engineering and Technology (JET), 6(2), 75–87.

Oyediran, I. A., & Enya, N. I. (2020). Variations in geotechnical characteristics of some crude oil contaminated soils. Global Journal of Geological Sciences, 18, 75–88. https://doi.org/10.4314/gjgs.v18i1.7

Salimnezhad, A., Soltani-Jigheh, H., & Soorki, A. A. (2021). Effects of oil contamination and bioremediation on geotechnical properties of highly plastic clayey soil. Journal of Rock Mechanics and Geotechnical Engineering, 13(3), 653–670. https://doi.org/10.1016/j.jrmge.2020.11.011

Singh, S., & Singh, R. P. (2008). In vitro methods of assay of antioxidants: an overview. Food Reviews International, 24(4), 392–415.

https://doi.org/10.1080/87559120802304269

Sirés, I., Brillas, E., Oturan, M. A., Rodrigo, M. A., & Panizza, M. (2014). Electrochemical advanced oxidation processes: today and tomorrow. A review. Environmental Science and Pollution Research, 21(14), 8336–8367. https://doi.org/10.1007/s11356-014-2783-1

Sutormin, O. S., Goncharov, A. S., Kratasyuk, V. A., Petrova, Y. Y., Bajbulatov, R. Y., Yartsov, A. E., & Shpedt, A. A. (2024). Effects of Oil Contamination on Range of Soil Types in Middle Taiga of Western Siberia. Sustainability, 16(24), 11204. https://doi.org/10.3390/su162411204

Swaroop, S. S., & Rani, V. (2015). Effect of oil contamination on geotechnical properties of clayey soil. International Journal of Engineering Research & Technology (IJERT), 3(29), 1–4.

Zulfahmi Ali Rahman, Z. A. R., Umar Hamzah, U. H., Mohd. Raihan Taha, M. R. T., Norsheila Sofhia Ithnain, N. S. I., & Noorulakma Ahmad, N. A. (2010). Influence of oil contamination on geotechnical properties of basaltic residual soil. https://doi.org/10.3844/AJASSP.2010.954.961

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Published

2025-12-01

How to Cite

A Review on the Geotechnical and Electrical Properties of Hydrocarbon-Contaminated Soils. (2025). University of Thi-Qar Journal for Engineering Sciences, 15(2), 199-213. https://doi.org/10.31663/utjes.15.2.728