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How does PFAS migrate through a complex subsurface? Using high-resolution EC-HPT soundings, our team in Gavere identified permeability contrasts and key stratigraphic transitions in detail. This knowledge underpins targeted sampling, improved monitoring and a realistic assessment of PFAS mobility.
Redeveloping former dry cleaning sites requires certainty about what lies beneath the surface. Using high-resolution site characterisation (HRSC), we map historical chlorinated solvent contamination accurately, even in hard-to-access urban locations. This creates a solid basis for well-informed remediation and viable redevelopment.
On an active production site, we conducted a high-resolution subsurface investigation to precisely identify source zones and contaminant behaviour. By applying HRSC techniques, chemical and geological data were integrated into one coherent model. The results directly supported targeted optimisation of the existing Pump & Treat system.
Using high-resolution site characterisation, we mapped the distribution of VOCHs with centimetre-level precision. This allowed the remediation to be more targeted, faster, and require less material. Less guesswork, more certainty. Discover how smart data makes soil remediation more efficient.
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