Laser incinerator Reactor: Radionuclide recycling system

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  2. Groundwater Protection Group - Surface Projects
  3. Nuclear Reactors, Waste Management - Murray - - Major Reference Works - Wiley Online Library
  4. Surface Projects | Groundwater Protection Group | Environmental Protection Division

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Kuskis attack. They kill. They steal. They laugh their ugly laugh when they have the After the buildings and if necessary foundations were removed, approximately 15, cubic yards of contaminated soil were excavated from about 13 acres of land.

Groundwater Protection Group - Surface Projects

The work was completed in Reclamation Facility and Sump Outfall Area - Radioactive elements were found in soils at the reclamation facility and in a sump outfall east of the facility. This facility was used from the late s through the late s to clean radioactive contaminants from clothing and equipment. It is no longer used for decontamination.

Water from decontamination of equipment was discharged at the sump outfall area until late Soils at the sump outfall contain elevated levels of cesium and strontium, as well as minor concentrations of other radioactive elements. The contaminated soil was excavated and shipped off site for disposal in Sediments in two of the manmade basins contain elevated levels of heavy metals such as copper, zinc and aluminum.

The Meadow Marsh ponds were cleaned up in the summer of and now function as a habitat for the Tiger Salamander population. Their sediments contain elevated levels of heavy metals such as copper and lead, as well as organic chemicals. Wooded Wetland - This area is located adjacent to the current landfill and received runoff from that landfill.

Sediments here contain elevated levels of metals such as aluminum. The storm recharge basins continue to operate and will be monitored. BNL conducts annual monitoring of surface water and sediments at the Wooded Wetland. Both heavy metals and radioactive elements were found in an ash pit, used from to to dispose of incinerator ash. Levels of contaminants were typical of those found in incinerator ash. Radioactive elements found here were common in incinerator ash and were unrelated to research operations at BNL.


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This area was cleaned up in the summer of The ash pit cleanup involved removing some trees, backfilling soil to even out the grade, placing 12 inches of topsoil to cover the ash, and reseeding the area with native grasses. A removal action is an accelerated cleanup response to a known contamination source.

The following areas of concern in Operable Unit I have been addressed as removal actions:. Former and Interim Landfills - These closed landfills, including a slit trench, were a source of groundwater contamination from volatile organic compounds VOCs and strontium The landfills, which cover nine acres of land, were used from to for the disposal of general waste, construction debris and chemicals. These landfills have been capped.

See the landfill annual reports for more information. Current Landfill - This closed eight-acre landfill was a source of VOC and tritium groundwater contamination.


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It was used from to for the disposal of the same materials as the other two landfills. The current landfill is no longer in operation for waste disposal and has been capped. Chemical Holes - These 55 waste pits were a source of VOC and strontium groundwater contamination. They were used from the late s to for the disposal of biological waste, chemical containers and glassware. These holes were excavated in Soil and debris were packaged and shipped off site for disposal in Rainwater percolating through contaminated soil can pick up the VOCs and transport them into the groundwater.

An air stripping system began operating in December to treat this groundwater. It has treated over 2. Cesium and strontium contamination was found in soils here. This facility has been used since for reducing the volume of liquid radioactive waste prior to disposal.

It is still an operational facility.

Nuclear Reactors, Waste Management - Murray - - Major Reference Works - Wiley Online Library

Three large storage tanks were in use here from to , and were removed in Six underground tanks and piping, along with radiologically contaminated soils, were removed as part of BNL's environmental cleanup in Low levels of cesium were found in soils near several buildings in the center of the BNL site. Soils from the HWMF were used as landscaping and fill material at these locations. These soils were excavated in and the soil sent for off-site disposal.

The excavated areas were backfilled with clean soil and were reseeded. Two other areas at BNL were examined for radiological contamination. The former Low Mass Criticality Facility was used for research from the mids to the mids, and for temporary drum storage from June to March No contamination at levels of human health concern was found at these two locations. No cleanup of these areas is required.

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Surface Projects | Groundwater Protection Group | Environmental Protection Division

Institutional controls and monitoring will continue. This facility supplies heating and cooling to all major BNL buildings and includes aboveground fuel tanks connected to a boiler building Building by aboveground and underground pipes. In the past, the Central Steam Facility included underground fuel storage tanks.

The spill pooled on about 1. At that time, portable pumps were used to clean up as much as possible. They recovered an unknown quantity of the oil and solvent. A 5,gallon underground storage tank, associated piping and visibly contaminated soil were removed from this area in October It became operational in November This system strips volatile and some semi-volatile contaminants from soils and groundwater into their vapor phase.


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  8. The vapors are then extracted from the ground and filtered to remove the contaminants.