Los Alamos National Laboratory (the Laboratory) is located approximately 25 miles northwest of Santa Fe, New Mexico, situated on the Pajarito Plateau. Technical Area 54 (TA-54), one of the Laboratory`s many technical areas, is a radioactive and hazardous waste management and disposal area located within the Laboratory`s boundaries. The purpose of this transuranic waste characterization, sampling, and analysis plan (CSAP) is to provide a methodology for identifying, characterizing, and sampling approximately 25,000 containers of transuranic waste stored at Pads 1, 2, and 4, Dome 48, and the Fiberglass Reinforced Plywood Box Dome at TA-54, Area G, of the Laboratory. Transuranic waste currently stored at Area G was generated primarily from res...
Los Alamos National Laboratory produces routine and non-routine hazardous waste as a by-product of m...
By the time the Waste Isolation Pilot Plant (WIPP) completes its Disposal Phase in FY 2034, the Depa...
Amid World War II, in the late 1930s, nuclear fission was discovered. This revolution gave way to th...
The Los Alamos National Laboratory (LANL) has begun characterizing transuranic (TRU) waste in order ...
The Los Alamos National Laboratory (LANL) has full capability to characterize transuranic (TRU) wast...
This paper presents the status of the Los Alamos National Laboratory (LANL) project for remediation ...
The Los Alamos National Laboratory (LANL) achieved a national milestone on the road to shipping tran...
This sampling plan (SP) describes the selection of containers for sampling of homogeneous solids and...
The Los Alamos National Laboratory (LANL) achieved a national milestone on the road to shipping tran...
The Hanford Site Transuranic Waste sampling Plan describes the selection of containers for sampling ...
Los Alamos National Laboratory (LANL) has characterized drums of solidified transuranic (TRU) waste ...
Much of the US Department of Energy`s (DOE`s) research on plutonium metallurgy and plutonium process...
At present, >35% of the volume of newly generated transuranic (TRU) waste at Los Alamos National Lab...
This paper represents an overview of analyses conducted on the TRU database maintained by the Los Al...
Seventeen remote-handled (RH) transuranic (TRU) waste canisters currently are stored in vertical, un...
Los Alamos National Laboratory produces routine and non-routine hazardous waste as a by-product of m...
By the time the Waste Isolation Pilot Plant (WIPP) completes its Disposal Phase in FY 2034, the Depa...
Amid World War II, in the late 1930s, nuclear fission was discovered. This revolution gave way to th...
The Los Alamos National Laboratory (LANL) has begun characterizing transuranic (TRU) waste in order ...
The Los Alamos National Laboratory (LANL) has full capability to characterize transuranic (TRU) wast...
This paper presents the status of the Los Alamos National Laboratory (LANL) project for remediation ...
The Los Alamos National Laboratory (LANL) achieved a national milestone on the road to shipping tran...
This sampling plan (SP) describes the selection of containers for sampling of homogeneous solids and...
The Los Alamos National Laboratory (LANL) achieved a national milestone on the road to shipping tran...
The Hanford Site Transuranic Waste sampling Plan describes the selection of containers for sampling ...
Los Alamos National Laboratory (LANL) has characterized drums of solidified transuranic (TRU) waste ...
Much of the US Department of Energy`s (DOE`s) research on plutonium metallurgy and plutonium process...
At present, >35% of the volume of newly generated transuranic (TRU) waste at Los Alamos National Lab...
This paper represents an overview of analyses conducted on the TRU database maintained by the Los Al...
Seventeen remote-handled (RH) transuranic (TRU) waste canisters currently are stored in vertical, un...
Los Alamos National Laboratory produces routine and non-routine hazardous waste as a by-product of m...
By the time the Waste Isolation Pilot Plant (WIPP) completes its Disposal Phase in FY 2034, the Depa...
Amid World War II, in the late 1930s, nuclear fission was discovered. This revolution gave way to th...