
In a presentation at the 2025 Tanks Conference, Samantha Frandsen outlined how Aestus’ scan-first approach at a fractured bedrock LANPL site in Oklahoma City uncovered the location and flow paths of both LNAPL and dissolved phase benzene.
A former truck stop with historic fuel releases developed a significant LNAPL and dissolved phase plume in fractured sandstone. After almost 8 years of deploying various remediation strategies, significant free product and high concentrations of benzene continued to show up in monitoring wells, but free product removal via high vacuum extraction was limited.
High-resolution electrical resistivity imaging (GeoTrax Survey™) was deployed to refine the Conceptual Site Model, revealing intersecting fracture zones controlling LNAPL distribution (see the below image for one of the wells that targeted recalcitrant LNAPL within one of the fracture zones). The images were then used to target high-vacuum extraction within these zones to achieve up to a 40-foot radius of influence and substantially improved recovery. Interestingly, Aestus was also able to re-image portions of the site 5 years after the targeted extraction wells were deployed and could see in the GeoTrax Survey™ images just how effective the extraction had been.









