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Radionuclide removal by apatite
by
Brady, Patrick V
, Moore, Robert C
, Rigali, Mark J
in
absorbent materials
/ actinides
/ adsorption
/ alkali metals
/ alkaline earth metals
/ Apatite
/ applications
/ Asia
/ cesium
/ Cs-137
/ Environmental geology
/ ENVIRONMENTAL SCIENCES
/ Far East
/ fixation
/ Fry Canyon
/ Fukushima Japan
/ Geochemistry
/ halides
/ Hanford Site
/ Honshu
/ iodides
/ isotopes
/ Japan
/ MANAGEMENT OF RADIOACTIVE AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES
/ metals
/ phosphates
/ radioactive isotopes
/ radioactive waste
/ radionuclides
/ remediation
/ selenates
/ selenites
/ solubility
/ sorption
/ Sr-90
/ strontium
/ United States
/ uranium
/ Utah
/ Washington
/ waste disposal
2016
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Radionuclide removal by apatite
by
Brady, Patrick V
, Moore, Robert C
, Rigali, Mark J
in
absorbent materials
/ actinides
/ adsorption
/ alkali metals
/ alkaline earth metals
/ Apatite
/ applications
/ Asia
/ cesium
/ Cs-137
/ Environmental geology
/ ENVIRONMENTAL SCIENCES
/ Far East
/ fixation
/ Fry Canyon
/ Fukushima Japan
/ Geochemistry
/ halides
/ Hanford Site
/ Honshu
/ iodides
/ isotopes
/ Japan
/ MANAGEMENT OF RADIOACTIVE AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES
/ metals
/ phosphates
/ radioactive isotopes
/ radioactive waste
/ radionuclides
/ remediation
/ selenates
/ selenites
/ solubility
/ sorption
/ Sr-90
/ strontium
/ United States
/ uranium
/ Utah
/ Washington
/ waste disposal
2016
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Radionuclide removal by apatite
by
Brady, Patrick V
, Moore, Robert C
, Rigali, Mark J
in
absorbent materials
/ actinides
/ adsorption
/ alkali metals
/ alkaline earth metals
/ Apatite
/ applications
/ Asia
/ cesium
/ Cs-137
/ Environmental geology
/ ENVIRONMENTAL SCIENCES
/ Far East
/ fixation
/ Fry Canyon
/ Fukushima Japan
/ Geochemistry
/ halides
/ Hanford Site
/ Honshu
/ iodides
/ isotopes
/ Japan
/ MANAGEMENT OF RADIOACTIVE AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES
/ metals
/ phosphates
/ radioactive isotopes
/ radioactive waste
/ radionuclides
/ remediation
/ selenates
/ selenites
/ solubility
/ sorption
/ Sr-90
/ strontium
/ United States
/ uranium
/ Utah
/ Washington
/ waste disposal
2016
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Journal Article
Radionuclide removal by apatite
2016
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Overview
A growing body of research supports widespread future reliance on apatite for radioactive waste cleanup. Apatite is a multi-functional radionuclide sorbent that lowers dissolved radionuclide concentrations by surface sorption, ion exchange, surface precipitation, and by providing phosphate to precipitate low-solubility radionuclide-containing minerals. Natural apatites are rich in trace elements, and apatite's stability in the geologic record suggest that radionuclides incorporated into apatite, whether in a permeable reactive barrier or a waste form, are likely to remain isolated from the biosphere for long periods of time. Here we outline the mineralogic and surface origins of apatite-radionuclide reactivity and show how apatites might be used to environmental advantage in the future.
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