DNAPL treatment is already challenging, but imagine your site sitting on top of fractured bedrock as well. When the DNAPL penetrates the overburden, it finds paths to go deeper....
For thermal projects, it all starts with the subsurface design. A numerical water and energy balance code can provide operational parameters such as energy input and extraction...
Because a thermal wellfield is a constantly changing entity with many different characteristics, collecting and managing the right data is essential in a successful treatment...
As injection designs become more sensitive to injection parameters like pressure and flow to achieve contact, performance can be optimized by manifolding multiple injection...
When a manufactured gas plant (MGP) site is identified for treatment, the typical approach involves excavating the contaminated soil, and either disposing of it at off-site...
Join national fracturing experts, Eric Moskal and Deborah Shaffer Schnell, P.E., for an in-depth look on the applicability of ZVI to treat a wide range of contaminants and the...
Mass removal is one of the major focal points for all parties involved in thermal projects, but it is often not well-defined or understood. The basis for calculating mass removal...
Investigating and remediating fractured rock can be a lot more complex than treating a porous media like sand or clay. This webinar will present information and data from projects...
An in situ thermal remediation (ISTR) design may look good on paper, but how will it perform in the field? Thermal Conduction Heating (TCH), Electrical Resistance Heating (ERH)...
On sites with contaminant masses counted in the hundred-thousand to million pound range, it’s imperative you choose the right technology for your remedy. Thermal technologies are...