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...
Complex geologies with highly permeable zones can cause significant challenges while heating the subsurface during in situ thermal treatment—and those challenges pose a serious...
“How do I choose between ERH and TCH?” It’s one of the most commonly asked questions when considering thermal remediation, and in this webinar one of the industry’s leading...
“Thermal” and “sustainable” in the same sentence?! Yes! Although most often associated with a high demand of resources and infrastructure, thermal remediation can be accomplished...
In the last 20 years, thermal remediation has gained a reputation as one of the most effective approaches for addressing sites with hard-to-treat constituents, everything from...
What do coal tar, PAHs, PCBs, pesticides, dioxins, PFAS and mercury all have in common? They’re all recalcitrant chemicals that are hard to treat using traditional remediation...
Treating fractured bedrock is complex, and effective remedial options are limited. Due to the fractured nature of rock, contamination can migrate deep, and pathways out of the...
CVOC DNAPL source zones present some of the most persistent obstacles in site cleanup. These sites often involve complex hydrogeology, high contaminant mass, and access...