Oil spill contamination remains a persistent environmental challenge in the Niger Delta,
particularly in Ogoni, Rivers State, Nigeria, where hydrocarbon pollution has severely
impacted soil and groundwater systems. This study applies Electrical Resistivity Tomography
(ERT) to delineate the spatial distribution of oil spill contamination in Domuubonatom, B
Dere, Gokana. Specifically, it investigates the vertical and horizontal dispersion of
hydrocarbon plumes, maps highly contaminated zones, and compares the performance of two
independent inversion software packages in plume delineation. ERT data were acquired along
multiple traverses using the Wenner–Schlumberger array to ensure optimal depth penetration
and lateral resolution. The datasets were processed and inverted using two industry-standard
software tools to evaluate differences in imaging accuracy and resolution. Results reveal
heterogeneous contaminant distribution, with deeper plume penetration observed in permeable
sandy formations and lateral spreading in low-relief zones. While one software demonstrated
superior vertical resolution, the other provided enhanced lateral continuity of plume
structures. The comparative analysis underscores the importance of multi-software integration
in improving interpretative reliability. The study highlights the effectiveness of ERT as a non
invasive tool for hydrocarbon contamination assessment and provides a robust framework for
environmental monitoring and remediation planning in oil-impacted regions.