The System Design Study (SDS), part of the Waste Technology Development Department at the Idaho National Engineering Laboratory (INEL), examined techniques available for the remediation of hazardous and transuranic waste stored at the Radioactive Waste Management Complex's Subsurface Disposal Area at the INEL. Using specific technologies, system concepts for treating the buried waste and the surrounding contaminated soil were evaluated. Evaluation included implementability, effectiveness, and cost. The SDS resulted in the development of technology requirements including demonstration, testing, and evaluation activities needed for implementing each concept
This report presents a survey and initial assessment of the existing state-of-the-art melter technol...
This Work Plan provides technical details for conducting a treatability study that will evaluate the...
This Treatability Study (TS) Operational Testing Program and Implementation Plan identifies operatio...
The System Design Study (SDS), part of the Waste Technology Development Department at the Idaho Nati...
The System Design Study (SDS), part of the Waste Technology Development Department of the Idaho Nati...
The System Design Study (SDS), part of the Waste Technology Development Department at the Idaho Nati...
Mixed radioactive and hazardous wastes were buried at the Department of Energy's Idaho National Engi...
In situ vitrification (ISV) is being evaluated as a remedial treatment technology for buried mixed a...
The Buried Waste Integrated Demonstration (BWID) is a program funded by the U.S. Department of Energ...
The US Department of Energy (DOE) has initiated a comprehensive research,development, demonstration,...
The purpose of this study is to identify candidate Monitored Geologic Repository (MGR) surface waste...
Between 1952 and 1970, over two million cubic ft of transuranic mixed waste was buried in shallow pi...
This document presents the plan of activities for the Buried Waste Integrated Demonstration (BWID) p...
Between 1952 and 1970, over two million cubic feet of transuranic mixed waste was buried in shallow ...
This conceptual design report addresses development of replacement remote-handled low-level waste di...
This report presents a survey and initial assessment of the existing state-of-the-art melter technol...
This Work Plan provides technical details for conducting a treatability study that will evaluate the...
This Treatability Study (TS) Operational Testing Program and Implementation Plan identifies operatio...
The System Design Study (SDS), part of the Waste Technology Development Department at the Idaho Nati...
The System Design Study (SDS), part of the Waste Technology Development Department of the Idaho Nati...
The System Design Study (SDS), part of the Waste Technology Development Department at the Idaho Nati...
Mixed radioactive and hazardous wastes were buried at the Department of Energy's Idaho National Engi...
In situ vitrification (ISV) is being evaluated as a remedial treatment technology for buried mixed a...
The Buried Waste Integrated Demonstration (BWID) is a program funded by the U.S. Department of Energ...
The US Department of Energy (DOE) has initiated a comprehensive research,development, demonstration,...
The purpose of this study is to identify candidate Monitored Geologic Repository (MGR) surface waste...
Between 1952 and 1970, over two million cubic ft of transuranic mixed waste was buried in shallow pi...
This document presents the plan of activities for the Buried Waste Integrated Demonstration (BWID) p...
Between 1952 and 1970, over two million cubic feet of transuranic mixed waste was buried in shallow ...
This conceptual design report addresses development of replacement remote-handled low-level waste di...
This report presents a survey and initial assessment of the existing state-of-the-art melter technol...
This Work Plan provides technical details for conducting a treatability study that will evaluate the...
This Treatability Study (TS) Operational Testing Program and Implementation Plan identifies operatio...