The Idaho National Engineering and Environmental Laboratory (INEEL) and the Fernald Environmental Management Project (FEMP) have jointly developed a field-deployed analytical system to rapidly scan, characterize, and analyze surface soil contamination. The basic system consists of a sodium iodide (NaI) spectrometer and global positioning system (GPS) hardware. This hardware can be deployed from any of four different platforms depending on the scope of the survey at hand. These platforms range from a large tractor-based unit (the RTRAK) used to survey large, relatively flat areas to a hand-pushed unit where maneuverability is important, to an excavator mounted system used to scan pits and trenches. The mobile sodium iodide concept was initia...
In this study, a new mobile system was developed for in-situ scanning and prediction of spatial radi...
A dig-face monitoring system consists of onsite hardware for collecting information on changing chem...
This document, provided in support of the Y-12 Site Radiological Characterization Study, analyzes th...
The Idaho National Engineering and Environmental Laboratory (INEEL) and the Fernald Environmental Ma...
Fluor Fernald Inc., in conjunction with partners from Argonne National Laboratory, the Department of...
The environmental restoration industry offers several sys¬tems that perform scan-type characterizati...
Through the support of the Department of Energy (DOE) Office of Environmental Management (EM) Techni...
The Fernald Environmental Management Project (FEMP) is a US Department of Energy site that is underg...
Uranium production and support facilities at several DOE sites occasionally caused local contaminati...
The US Department of Energy conducted the 1994 Fernald (Ohio) field characterization demonstration p...
The Department of Defense (DoD) has hundreds of facilities where radioactive materials have been use...
Numerous sites within the U.S. Department of Energy (DOE) complex have been contaminated with variou...
Traditional methodologies for quantitative characterization of radionuclide-contaminated soils over ...
This paper describes current efforts at AlliedSignal Federal Manufacturing and Technologies (FM and ...
The Measurement Applications and Development Group at the Oak Ridge National Laboratory (ORNL) has c...
In this study, a new mobile system was developed for in-situ scanning and prediction of spatial radi...
A dig-face monitoring system consists of onsite hardware for collecting information on changing chem...
This document, provided in support of the Y-12 Site Radiological Characterization Study, analyzes th...
The Idaho National Engineering and Environmental Laboratory (INEEL) and the Fernald Environmental Ma...
Fluor Fernald Inc., in conjunction with partners from Argonne National Laboratory, the Department of...
The environmental restoration industry offers several sys¬tems that perform scan-type characterizati...
Through the support of the Department of Energy (DOE) Office of Environmental Management (EM) Techni...
The Fernald Environmental Management Project (FEMP) is a US Department of Energy site that is underg...
Uranium production and support facilities at several DOE sites occasionally caused local contaminati...
The US Department of Energy conducted the 1994 Fernald (Ohio) field characterization demonstration p...
The Department of Defense (DoD) has hundreds of facilities where radioactive materials have been use...
Numerous sites within the U.S. Department of Energy (DOE) complex have been contaminated with variou...
Traditional methodologies for quantitative characterization of radionuclide-contaminated soils over ...
This paper describes current efforts at AlliedSignal Federal Manufacturing and Technologies (FM and ...
The Measurement Applications and Development Group at the Oak Ridge National Laboratory (ORNL) has c...
In this study, a new mobile system was developed for in-situ scanning and prediction of spatial radi...
A dig-face monitoring system consists of onsite hardware for collecting information on changing chem...
This document, provided in support of the Y-12 Site Radiological Characterization Study, analyzes th...