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Rapid screening of petroleum-based liquids

Rapid screening of petroleum-based liquids

The UVOST from Dakota Technologies is a direct-push delivered sensor that allows rapid screening of most petroleum-based light non-aqueous phase liquids (LNAPL). This tool uses laser-induced fluorescence (LIF) technology to immediately detect sub-surface contamination, without having to draw samples or wait for lab results. UVOST responds exclusively to source term NAPL, free of interference from dissolved phase hydrocarbons, and is ideal for detecting fuels, lubricants, and crude oils. The system is designed for use with all direct-push platforms such as Geoprobe, AMS PowerProbe and cone penetrometers. 

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Environmental

Detect petroleum spills in the subsurface

Detect petroleum spills in the subsurface

Dakota Technologies offers the UVOST, a direct-push delivered sensor that allows rapid screening of most petroleum-based light non-aqueous phase liquids (LNAPLs). This tool uses laser-induced fluorescence (LIF) technology to immediately detect sub-surface contamination without having to draw samples or wait for lab results.
The UVOST responds exclusively to source term NAPL, free of interference from dissolved phase hydrocarbons, and it is ideal for detecting fuels, lubricants, and crude oils. The system is designed for use with all direct-push platforms such as Geoprobe, AMS PowerProbe, and cone penetrometers. 
When deployed, the UVOST’s probe uses ultra-violet laser light and a sapphire-windowed sensor to detect the polycyclic aromatic hydrocarbons (PAHs) that are found in petroleum LNAPL. As the probe is driven into the ground, the LNAPL’s fluorescence signal is sent through a fiber-optic cable to a detector and logged by a laptop computer, so results can be seen in real time, and on-site personnel can begin determining an ideal location for the next probing location. In a typical day 250 to 500 feet of continuous logging can be performed.
For each hole the UVOST generates a detailed, colorized log that shows the presence of PAH LNAPL versus depth. The high-resolution electronic logs can be easily incorporated into three-dimensional conceptual site models, which are used to help estimate costs and create a plan for removal of the contaminants.

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